acetato di etile
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Reagente chimico Octan etylu (CAS 141-78-6). Scheda enciclopedica completa — classificazione, proprietà e dati di sicurezza — di seguito.
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Panoramica chimica: Ethyl AcetateMolGod_OVERVIEW_1
| Formula molecolare | C4H8O2[1] |
| Peso molecolare | 88.11 g/mol[1] |
| Punto di fusione | -83.6 °C[1][2] |
| Punto di ebollizione | 77.1 °C (760 mmHg)[1][2] |
| Densità | 0.9003 g/cm³[1][2] |
| LogP (lipofilia) | 0.73[1] |
| Nome IUPAC | ethyl acetate[1] |
| SMILES | CCOC(=O)C[1] |
| InChIKey | XEKOWRVHYACXOJ-UHFFFAOYSA-N[1] |
Sinonimi: ETHYL ACETATE · 141-78-6 · Ethyl ethanoate · Acetic acid ethyl ester · Vinegar naphtha
Fonti dei dati: PubChem (NLM/NIH), Reid, Prausnitz, Poling 4th ed. (1987)
Ultimo aggiornamento: 2026-06-30
📚 Riferimenti scientifici (Chicago Author-Date) (2 sources)
- PubChem. National Center for Biotechnology Information (NIH/NLM), chemical compound database. ↗ dotyczy: Formula molecolare · Peso molecolare · Punto di fusione · Punto di ebollizione · Densità · LogP (lipofilia) · Nome IUPAC · SMILES · InChIKey
- DECHEMA, PTB, and BAM. CHEMSAFE - Database of Evaluated Safety Characteristics for the Avoidance of Explosions. Frankfurt am Main: DECHEMA e.V.; Braunschweig/Berlin: Physikalisch-Technische Bundesanstalt and Bundesanstalt fur Materialforschung und -prufung. ↗ dotyczy: Punto di fusione · Punto di ebollizione · Densità
RICERCA SCIENTIFICA
📚 Riferimenti scientifici (Chicago Author-Date) 9 refs · 5 baz
MOLEKUŁA Bibliografia per-CAS (live da 13+ banche dati)
Fonti: db:Europe PMC (2) · db:pubmed (1) · db:core (2) · db:openalex (4) · db:crossref (1)
- db:Europe PMC et al.. (2025). "Direct Conversion of Ethanol to Ethyl Acetate by Dynamic Polyoxometalate/Carbon Nanohorn Electrocatalytic Interfaces.". https://doi.org/10.1021/jacs.5c10817 →
- db:Europe PMC et al.. (2025). "Understanding the Reactivity of N-Heptane Blended with Ethanol or Ethyl Acetate.". https://doi.org/10.1021/acsomega.4c10828 →
- db:pubmed Api AM, Belsito D, Botelho D et al.. (2022). "RIFM fragrance ingredient safety assessment, ethyl acetate, CAS Registry Number 141-78-6.". Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association. https://doi.org/10.1016/j.fct.2022.113363 →
- db:core Hartwig, Andrea, Deutsche Forschungsgemeinschaft. Ständige Senatskommission zur Prüfung Gesundheitsschädlicher Arbeitsstoffe, MAK Commission. (2019). "Ethyl acetate : MAK Value Documentation, 2017". https://doi.org/10.1002/3527600418.mb14178e6319 →
- db:crossref Chao Cheng, Yang Cong, Cunbin Du et al.. (2016). "Solubility determination and thermodynamic models for dehydroepiandrosterone acetate in mixed solvents of (ethyl acetate + methanol), (ethyl acetate + ethanol) and (ethyl acetate + isopropanol)". The Journal of Chemical Thermodynamics. https://doi.org/10.1016/j.jct.2016.06.014 →
- db:openalex Sónia A. C. Carabineiro, Michalis Konsolakis, George E. Marnellos et al.. (2016). "Ethyl Acetate Abatement on Copper Catalysts Supported on Ceria Doped with Rare Earth Oxides". Molecules. https://doi.org/10.3390/molecules21050644 →
- db:openalex David Villanueva-Bermejo, Elena Ibáñez, Guillermo Reglero et al.. (2015). "Effect of cosolvents (ethyl lactate, ethyl acetate and ethanol) on the supercritical CO2 extraction of caffeine from green tea". The Journal of Supercritical Fluids. https://doi.org/10.1016/j.supflu.2015.07.008 →
- db:openalex Eliza de Lucas Chazin. (2012). "Ethyl Acetate (CAS No. 141-78-6)". Revista Virtual de Química. https://doi.org/10.5935/1984-6835.20120061 →
- db:core (2012). "Ethyl Acetate 141-78-6". https://doi.org/10.1002/0471701343.sdp11445.pub2 →
Proprietà fisico-chimiche
Riferimento rapido
Proprietà dettagliate
Uzupełnienie tabeli „Właściwości fizykochemiczne (baza danych)” poniżej — powtórzone wartości pokazujemy tylko raz.
| Proprietà | Valore | Unità | Conditions | Source |
|---|---|---|---|---|
| Viscosità (η) | 0.423 mPa.s at 25 °C[1][2] | Hazardous Substances Data Bank (HSDB) ↗ | ||
| Indice di rifrazione (nD) | 1.3724[1] | 20 °C, D-line | Reid, Prausnitz, Poling 4th ed. (1987) |
🔬 Proprietà avanzate
Identificatori chimici
CCOC(=O)C InChI=1S/C4H8O2/c1-3-6-4(2)5/h3H2,1-2H3
XEKOWRVHYACXOJ-UHFFFAOYSA-N
Fonti dei dati: Hazardous Substances Data Bank (HSDB), Reid, Prausnitz, Poling 4th ed. (1987) (ISBN 9780070517998)
Ultimo aggiornamento: 2026-06-30
📚 Riferimenti scientifici (Chicago Author-Date) (2 sources)
📡 Spettroscopia — CAS 141-78-6MolGod_SPECHUB_MAIN
Proprietà fisico-chimiche (database) 22 campi MolGod Score: Primario
| Proprietà | Valore | Unità | Conditions | Source |
|---|---|---|---|---|
| Punto di fusione | -83.6 [1][2] | °C | 1 atm | Reid, Prausnitz, Poling 4th ed. (1987) |
| Punto di ebollizione | 77.1 [1][2] | °C | 760 mmHg | Reid, Prausnitz, Poling 4th ed. (1987) |
| Solubilità in acqua | 80 [1] | g/L | 25°C | Reid, Prausnitz, Poling 4th ed. (1987) |
| Densità (ρ) | 0.9003 [1][2] | g/cm³ | 20°C | Reid, Prausnitz, Poling 4th ed. (1987) |
| Indice di rifrazione (n_D) | 1.3724 [2] | — | 20°C, sodium D | Reid, Prausnitz, Poling 4th ed. (1987) |
| Viscosità (η) | 0.423 | cP | 25°C | Reid, Prausnitz, Poling 4th ed. (1987) |
| Tensione di vapore | 93.2 [1] | mmHg | 25°C | Reid, Prausnitz, Poling 4th ed. (1987) |
| Punto di infiammabilità | -3 [1][2] | °C | closed cup | No primary source |
| Temperatura di autoaccensione | 426 [2] | °C | in air | No primary source |
| logP (ottanolo/acqua) | 0.73 [2][3] | — | No primary source | |
| logD (pH 7) | 0.73 | — | pH 7 | Reid, Prausnitz, Poling 4th ed. (1987) |
| Costante dielettrica (ε) | 6.02 | — | Reid, Prausnitz, Poling 4th ed. (1987) | |
| Tensione superficiale | 23.75 | mN/m | Reid, Prausnitz, Poling 4th ed. (1987) | |
| Calore specifico (cp) | 1.94 | J/(g·K) | Reid, Prausnitz, Poling 4th ed. (1987) | |
| Conducibilità termica (k) | 0.141 | W/(m·K) | Reid, Prausnitz, Poling 4th ed. (1987) | |
| Momento dipolare (μ) | 1.78 | D | Reid, Prausnitz, Poling 4th ed. (1987) | |
| ΔH di vaporizzazione | 31.94 | kJ/mol | Reid, Prausnitz, Poling 4th ed. (1987) | |
| ΔH di fusione | 10.5 | kJ/mol | at mp | Reid, Prausnitz, Poling 4th ed. (1987) |
| Temperatura critica (Tc) | 250.1 | °C | critical point | Reid, Prausnitz, Poling 4th ed. (1987) |
| Pressione critica (Pc) | 38.3 | bar | critical point | Reid, Prausnitz, Poling 4th ed. (1987) |
| Fattore acentrico (ω) | 0.362 | — | Pitzer | Reid, Prausnitz, Poling 4th ed. (1987) |
| Solubilità in etanolo | miscible | — | opis jakościowy (bez wartości liczbowej) | Reid, Prausnitz, Poling 4th ed. (1987) |
📚 Riferimenti scientifici (Chicago Author-Date) (3 sources)
- DECHEMA, PTB, and BAM. CHEMSAFE - Database of Evaluated Safety Characteristics for the Avoidance of Explosions. Frankfurt am Main: DECHEMA e.V.; Braunschweig/Berlin: Physikalisch-Technische Bundesanstalt and Bundesanstalt fur Materialforschung und -prufung. ↗ dotyczy: Punto di fusione · Punto di ebollizione · Solubilità in acqua · Densità (ρ) · Tensione di vapore · Punto di infiammabilità
- PubChem. National Center for Biotechnology Information (NIH/NLM), chemical compound database. ↗ dotyczy: Punto di fusione · Punto di ebollizione · Densità (ρ) · Indice di rifrazione (n_D) · Punto di infiammabilità · Temperatura di autoaccensione · logP (ottanolo/acqua)
- Sangster, J. "Octanol-Water Partition Coefficients of Simple Organic Compounds." Journal of Physical and Chemical Reference Data 18, no. 3 (1989): 1111-1229. ↗ dotyczy: logP (ottanolo/acqua)
I valori fisico-chimici provengono da fonti indipendenti e sottoposte a revisione paritaria elencate sopra.
🛡️ Sicurezza — CAS 141-78-6MolGod_SAFEHUB_MAIN
Classificazione GHS/CLP — Regolamento (CE) n. 1272/2008 + UN GHS Rev. 9 (2021).
🚨 Indicazioni di pericolo (H)
- H225 — Liquido e vapori facilmente infiammabili.
- H336 — Può provocare sonnolenza o vertigini.
- H319 — Provoca grave irritazione oculare.
- EUH066
🛡 Consigli di prudenza (P)
- P210 — Tenere lontano da fonti di calore, superfici calde, scintille, fiamme libere o altre fonti di accensione. Non fumare.
- P233 — Tenere il recipiente ben chiuso.
- P240 — Mettere a terra e a massa il contenitore e il dispositivo ricevente.
- P261 — Evitare di respirare la polvere/i fumi/i gas/la nebbia/i vapori/gli aerosol.
- P264 — Lavare accuratamente … dopo l’uso.
- P271 — Utilizzare soltanto all’aperto o in luogo ben ventilato.
- P280 — Indossare guanti/indumenti protettivi/Proteggere gli occhi/il viso.
- P303+P361+P353 — IN CASO DI CONTATTO CON LA PELLE (o con i capelli): Togliere immediatamente tutti gli indumenti contaminati.; Sciacquare la pelle [o fare una doccia].
- P304+P340 — IN CASO DI INALAZIONE: Trasportare l’infortunato all’aria aperta e mantenerlo a riposo in posizione che favorisca la respirazione.
- P305+P351+P338 — IN CASO DI CONTATTO CON GLI OCCHI: Sciacquare accuratamente per parecchi minuti.; Togliere le eventuali lenti a contatto se è agevole farlo. Continuare a sciacquare.
- P312 — In caso di malessere, contattare un CENTRO ANTIVELENI/un medico/…
- P337+P313 — Se l’irritazione degli occhi persiste: Consultare un medico.
- P370+P378 — In caso di incendio: Utilizzare … per estinguere.
- P403+P235 — Conservare in luogo ben ventilato.: Conservare in luogo fresco.
- P403+P233 — Conservare in luogo ben ventilato.: Tenere il recipiente ben chiuso.
- P405 — Conservare sotto chiave.
- P501 — Smaltire il prodotto/recipiente in …
✓ Classificazione armonizzata ai sensi dell'allegato VI del regolamento CLP (CE) 1272/2008 (classificazione ufficiale, vincolante). Numero indice: 607-022-00-5.
Riferimento (Chicago): European Chemicals Agency. "ethyl acetate, Index No. 607-022-00-5." In Table 3 of Annex VI to Regulation (EC) No 1272/2008 (CLP Regulation), 23rd Adaptation to Technical Progress (harmonised list as of 2026-07-07). Helsinki: European Chemicals Agency, 2026. https://echa.europa.eu/information-on-chemicals/annex-vi-to-clp.
Traduzioni: Regolamento CLP (CE) 1272/2008, Allegato III e IV. Dati: PubChem/NLM.
📚 Riferimenti scientifici consolidati — Chicago Author-Date 10 sources
Riferimenti raccolti da tutte le schede del Safety Hub. CAS: 141-78-6 ·
PubChem ↗
- Parlament Europejski i Rada UE. 2008. "Rozporządzenie (WE) nr 1272/2008 w sprawie klasyfikacji, oznakowania i pakowania substancji (CLP)." Dz.Urz. UE L 353. [↗] GHS, Normative
- United Nations Economic Commission for Europe (UNECE). 2021. "Globally Harmonized System of Classification and Labelling of Chemicals (GHS), Ninth Revised Edition." United Nations, Geneva. [↗] GHS
- Goldfrank, Lewis R., Robert S. Hoffman, Mary Ann Howland, et al.. 2019. "Goldfrank's Toxicologic Emergencies, 11th ed.." McGraw-Hill Education, New York. ISBN 978-1-25-985961-8. Pierwsza pomoc, Toksykologia
- National Institute for Occupational Safety and Health (NIOSH). 2023. "NIOSH Pocket Guide to Chemical Hazards (DHHS Publ. 2005-149)." U.S. Department of Health and Human Services / CDC, Cincinnati, OH. [↗] Pierwsza pomoc, PPE, Toksykologia
- European Committee for Standardization (CEN). 2016. "EN 374-1:2016 — Protective gloves against dangerous chemicals and micro-organisms." CEN, Brussels. [↗] PPE
- UNECE. 2023. "European Agreement Concerning the International Carriage of Dangerous Goods by Road (ADR 2025)." United Nations, Geneva. [↗] Utylizacja, Regulacje
- National Fire Protection Association (NFPA). 2022. "NFPA 400 — Hazardous Materials Code." NFPA, Quincy, MA. [↗] Magazynowanie
- Urben, P.G. (ed.). 2017. "Bretherick's Handbook of Reactive Chemical Hazards, 8th ed.." Butterworth-Heinemann / Elsevier, Oxford. [↗] Magazynowanie
- Ministerstwo Klimatu i Środowiska RP. 2023. "Baza danych o produktach i opakowaniach oraz o gospodarce odpadami (BDO)." Ministerstwo Klimatu i Środowiska, Warszawa. [↗] Utylizacja
- International Agency for Research on Cancer (IARC / WHO). 2024. "IARC Monographs on the Identification of Carcinogenic Hazards to Humans — List of Classifications." WHO, Lyon. [↗] Toksykologia
Le schede con riferimenti propri (Emergency, PPE, Storage, Waste) contengono ulteriori voci bibliografiche all'interno delle rispettive sezioni.
Statistica analitica (t-test · RSD · Grubbs · Q-Dixon) ICH Q2
Incolla una serie di misure replicate (CSV oppure un numero per riga). Il calcolatore calcolerà la media, la deviazione standard e il 95% CI, e rileverà gli outlier (Grubbs + Dixon Q).
📐 Formule statistiche
x̄ = Σxᵢ / n— media aritmeticas² = Σ(xᵢ - x̄)² / (n-1)— varianza campionarias = √s²— deviazione standardRSD% = (s / x̄) × 100%— deviazione standard relativaCI₉₅ = x̄ ± t(0.05, n-1) × s / √n— Student's tG = |xᵢ - x̄| / s— test di GrubbsQ = |xsuspect - xnearest| / |xmax - xmin|— Dixon Q-test
Fonte: ICH Q2(R2) Validation of Analytical Procedures · ICH PDF ↗
Calcolatore di ricette per tamponi UNIQUE
Scegli un tampone dall'elenco di 20 sistemi popolari → inserisci il pH target → otterrai una ricetta esatta con le masse da pesare.
Passo 1: Scegli un sistema tampone
📜 Cronologia delle ricette (ultime 10)
Classificazione di trasporto (ADR / IATA / IMDG) UN 1173
🛣️ ADR Trasporto stradale
- Classe:
- 3 — Materiały ciekłe zapalne
- Gruppo di imballaggio:
- II
- Nome di spedizione:
- ETHYL ACETATE
Fonti: ADR 2025 ↗ · IATA DGR ↗ · IMDG Code ↗
🔧 Risoluzione dei problemi HPLC — albero decisionale 6 problemi comuni
Diagnostica dei 6 problemi HPLC più comuni con albero decisionale (5 passaggi per problema). Fonte: Snyder/Kirkland/Dolan 3rd ed. Chapter 17 + LCGC LC Troubleshooting columns 1989-2024.
Picchi allargati (broad peaks) medium
Sintomo: Tutti i picchi nel cromatogramma sono più larghi del previsto (FWHM > 2× della norma)
🔍 Albero diagnostico:
-
1. Verifica se tutti i picchi sono allargati o solo alcuni
→ SÌ: Tutti → problema strumentale (colonna o sistema)
→ NO: Solo alcuni → problema chimico (interazione con la colonna per analiti specifici) -
2. Sostituisci con una colonna di prova — il problema scompare?
→ SÌ: COLONNA usurata — packing danneggiato, void nei primi mm. Sostituiscila.
→ NO: Problema nel sistema LC -
3. Controllare il volume morto (dead volume) — loop di iniezione, connessioni, rivelatore
→ SÌ: Loop > 100 µL per una colonna da 4.6 mm o connessioni allentate → sostituire le ferrule, accorciare i tubi
→ NO: Continua diagnostica -
4. Test di temperatura: aumentare la colonna da 25°C a 40°C
→ SÌ: Picchi più stretti → cinetica di trasferimento di massa troppo lenta (aumentare T)
→ NO: Continue -
5. Controllare il flow rate rispetto al valore ottimale di van Deemter per questa colonna
→ SÌ: Ottimale per 4.6mm/5µm = 1.0 mL/min, per 2.1mm/3µm = 0.4 mL/min
→ NO: Continue
- Colonna usurata (>2000 iniezioni senza guard)
- Volume morto del sistema > 100 µL (loop errato, tubi lunghi, ferrule allentate)
- Temperatura troppo bassa (cinetica di trasferimento di massa)
- Flow rate al di fuori dell'ottimale di van Deemter
- Solvente del campione più forte della fase A
- ✓ Sostituire la colonna (quando >2000 iniezioni)
- ✓ Controllare tutte le connessioni — tubi il più corti possibile
- ✓ Aumentare la T della colonna a 40°C (se la sostanza è stabile)
- ✓ Ridurre il flow all'ottimale di van Deemter
- ✓ Sciogliere il campione nella fase A (non in organico puro)
Coda dei picchi (tailing, T > 1.5) high
Sintomo: I picchi presentano una "coda" prolungata sul lato di eluizione tardiva (asimmetria T = b/a > 1.5 secondo USP)
🔍 Albero diagnostico:
-
1. La sostanza contiene gruppi basici (ammino, piridina)?
→ SÌ: Sì → interazioni silanoliche! Aggiungere 0.1% TFA o 5-10 mM TEA alla fase A.
→ NO: Continue -
2. Controllare il pH della fase mobile rispetto al pKa della sostanza
→ SÌ: pH = pKa ± 1 → ionizzazione parziale, peak split. Portare il pH a ≥ 2 unità di distanza dal pKa.
→ NO: Continue -
3. Controllare l'età della colonna (>1500 iniezioni?)
→ SÌ: Sì → silanoli esposti (column bleed). Sostituire con una colonna con endcapping più elevato (XTerra, Symmetry).
→ NO: Continue -
4. Il campione contiene metalli (Fe, Cu dalle fiale di vetro)?
→ SÌ: Sì → utilizzare fiale incolori di tipo II o PFA. EDTA 0.1mM nel campione.
→ NO: Continue
- Interazioni silanoliche (analita basico + silanoli liberi del gel di silice)
- pH al limite del pKa dell'analita (peak split)
- Colonna vecchia (column bleed, elevata attività silanolica)
- Metalli nel campione (chelazione → tailing)
- Sovraccarico della colonna (>50 µg su una colonna da 4.6mm)
- ✓ Aggiungere 0.1% TFA (UV) o 0.1% acido formico (LC-MS) alla fase A
- ✓ Scegliere una colonna con endcapping ad alta purezza: Waters XBridge BEH, Phenomenex Kinetex
- ✓ Lavorare a pH ≥ 2 unità di distanza dal pKa
- ✓ EDTA 0.1mM nel campione (chelazione Fe/Cu)
- ✓ Ridurre il volume di iniezione a ≤ 20 µL per una colonna da 4.6mm
Deriva della linea di base (baseline drift) medium
Sintomo: La linea di base aumenta o diminuisce sistematicamente per >5 minuti
🔍 Albero diagnostico:
-
1. Si sta utilizzando un gradiente (B% in aumento)?
→ SÌ: Sì → assorbimento diverso delle fasi A e B a dλ. Cambio di solvente nell'UV-cutoff. Controllare l'assorbanza UV del % di organico.
→ NO: Continua (isocratico) -
2. Controllare la temperatura della colonna — è stabile a ±0.5°C?
→ SÌ: Sì (stabile) → continua
→ NO: Instabile → attivare il termostato della colonna (>25°C controllato) -
3. Test: spegnere l'autosampler, far funzionare solo pompa+colonna+rivelatore
→ SÌ: La deriva scompare → contaminazione dell'autosampler (pulire l'ago, il septum)
→ NO: Continue -
4. Controllare l'età della lampada (D2 per UV)
→ SÌ: Sì (>1500 ore) → sostituire la lampada
→ NO: Continue
- Eluizione a gradiente con UV-cutoff diverso delle fasi
- T della colonna instabile
- Contaminazione dell'ago/septum dell'autosampler
- Lampada UV vecchia (>1500h)
- Cella di flusso del rivelatore sporca
- Colonna non equilibrata (<10 volumi di colonna)
- ✓ Pre-equilibrare la colonna per 10-15 volumi di colonna al 100% A
- ✓ Termostato colonna attivo, T 30-40°C stabile
- ✓ Pulire la flow cell del rivelatore con soluzione ACN:H2O 50:50
- ✓ Sostituire la lampada D2 se >1500h
- ✓ Usare la baseline subtraction (funzione nativa Chromeleon, Empower)
Nessun picco / picco perso (no peak) critical
Sintomo: Il picco atteso dell'analita non compare nel cromatogramma
🔍 Albero diagnostico:
-
1. L'iniezione è stata effettivamente eseguita?
→ SÌ: Controllare il log dell'autocampionatore, la pressione della pompa (dovrebbe calare durante l'iniezione)
→ NO: Problema dell'autocampionatore → controllare il loop, l'ago, il campione nella fiala -
2. Il campione è nella fiala (volume corretto, non evaporato)?
→ SÌ: Continue
→ NO: Nessun campione — ri-pipettare -
3. Stabilità del campione — preparato >24h fa?
→ SÌ: Sì → degradazione. Ri-preparare un campione fresco.
→ NO: Continue -
4. Controllare la lunghezza d'onda di rilevazione rispetto al λmax della sostanza
→ SÌ: Rilevazione a λ NON corrisponde al λmax → nessun segnale. Scansione DAD 200-400nm.
→ NO: Continue -
5. Test: iniettare uno standard puro (di concentrazione nota, fresco)
→ SÌ: Lo standard dà un picco → problema con il campione (matrice, derivatizzazione)
→ NO: Nessun picco anche con lo standard → problema di sistema (colonna, fase, gradiente)
- Campione non prelevato dalla fiala (bug dell'autocampionatore)
- Campione degradato (>24h pH/temp/luce)
- Rilevazione alla lunghezza d'onda errata
- Fase mobile errata (es. TFA dimenticato)
- Colonna invertita / fase stazionaria errata
- La sostanza eluisce sul fronte (V0) → non trattenuta, non visibile
- ✓ Ri-preparare un campione fresco secondo il protocollo esatto
- ✓ Scansione UV-Vis DAD 200-400nm + ricerca del λmax
- ✓ Controllare la composizione della fase mobile — TFA aggiunto?
- ✓ Testare la direzione inversa della colonna (con cautela!)
- ✓ Per ritenzione <1 min — abbassare il % B, MeOH al posto di ACN
- ✓ Verifica il tempo di ritenzione atteso nel database dei metodi del plugin
Pressione troppo alta (pressure too high) critical
Sintomo: Pressione della pompa > 80% del massimo della colonna o shutdown del sistema con errore high-pressure
🔍 Albero diagnostico:
-
1. Controllare che la colonna sia collegata correttamente (direzione della freccia)
→ SÌ: OK
→ NO: Colonna invertita → invertirla (non lavorare mai "al contrario") -
2. Test: rimuovere la colonna dal sistema, far girare pompa+rivelatore da soli
→ SÌ: La pressione scende a <50 bar → problema nella colonna (intasata)
→ NO: La pressione rimane alta → filtro in-line intasato, frit sporco -
3. Controllare il filtro pre-colonna (frit in-line)
→ SÌ: Sporco e brunastro → sostituire
→ NO: Continue -
4. Retro-lavare la colonna con ACN:H2O 50:50 senza la colonna — scompare?
→ SÌ: Particelle bloccate nel primo mm — un flush di 30 min può recuperarla
→ NO: Sostituire la colonna
- Filtro in-line (frit) intasato da particelle
- Salting-out del buffer (precipitazione ad alto %B)
- Il campione contiene materiale in sospensione (filtrare a 0.22 µm prima dell'iniezione)
- Colonna intasata (compattazione del letto della colonna)
- Gradiente con fase buffer + molto organico → precipitazione del sale
- ✓ Filtrare SEMPRE il campione con PVDF 0.22 µm prima dell'iniezione
- ✓ Sostituire il filtro in-line ogni 100 iniezioni (o quando la pressione aumenta >20%)
- ✓ NON usare buffer fosfato >20mM + >70% ACN (il sale precipita)
- ✓ Lavare la colonna per 30 min con ACN:H2O 50:50 in direzione inversa (quando il produttore lo consente)
- ✓ Pre-colonna 4×3mm per proteggere la colonna principale
Picchi fantasma (ghost peaks) high
Sintomo: Picchi inspiegabili sul cromatogramma assenti nella calibrazione
🔍 Albero diagnostico:
-
1. Test: iniezione in bianco (solvente puro del campione)
→ SÌ: Compare un ghost → contaminazione del sistema o degli eluenti
→ NO: Compare solo con il campione → matrice -
2. Il ghost cresce con il gradiente (eluisce ad alta %B)?
→ SÌ: Sì → colonna sovraccarica o composti fortemente trattenuti dalla corsa precedente
→ NO: Indipendente dal gradiente → carryover dell'autocampionatore -
3. Increase carryover wash (between injections)
→ SÌ: Aiuta → il carryover era la causa. Protocollo di lavaggio più forte.
→ NO: Continue -
4. Iniezione di acqua pura — c'è un picco?
→ SÌ: Sì → contaminazione della fonte d'acqua (sostanze organiche dal sistema DI)
→ NO: Continue
- Carryover nell'ago/loop dell'autocampionatore
- Contaminazione dell'eluente (anche di grado HPLC)
- Componenti fortemente trattenuti da corse precedenti
- Plastica nelle fiale (ftalati, PEG dai tappi)
- Acqua DI insufficientemente purificata
- ✓ Rafforzare il protocollo di lavaggio: 100% B → 100% A → 50:50 (3 cicli)
- ✓ Lavaggio forte: DMSO 100% o MeOH 100% prima della calibrazione
- ✓ Filtrare gli eluenti con PTFE 0.22 µm in caso di dubbio
- ✓ Usare vetro ambrato + tappi con rivestimento in Teflon per i campioni
- ✓ Rampa di gradiente periodica fino a 100% B per 10 min (clean-out)
📚 Riferimenti scientifici (Chicago Author-Date) — fare clic per espandere
- Snyder, Lloyd R., Joseph J. Kirkland, and John W. Dolan. 2010. Introduction to Modern Liquid Chromatography. 3rd ed. John Wiley & Sons. Chapter 17 (Troubleshooting) pp. 559-616. ISBN 978-0-470-16754-0. https://doi.org/10.1002/9780470508183 [link ↗]
- Dolan, John W.. 2014. LC Troubleshooting (monthly column 1989-2024). LCGC North America. [link ↗] — John Dolan 35-letnia seria miesięcznych artykułów problemowych
- Kromidas, Stavros. 2017. HPLC Made to Measure: A Practical Handbook for Optimization. 2nd ed. Wiley-VCH. ISBN 978-3-527-31377-1. — Praktyczny przewodnik problem-solving dla labs analitycznych
- Dolan, John W.. 2013. When to Modify Method Conditions. 192-199. [link ↗] — Decision flow for changing flow rate / temperature / %B vs swapping columns.
- Dong, Michael W.. 2019. HPLC and UHPLC for Practicing Scientists. 2nd ed. Wiley. ISBN 978-1-119-31378-3. https://doi.org/10.1002/9781119313793 [link ↗] — Chapter 9 covers troubleshooting modern UHPLC systems (sub-2 µm particles).
- Meyer, Veronika R.. 2010. Practical High-Performance Liquid Chromatography. 5th ed. Wiley. ISBN 978-0-470-68218-0. — Solid step-by-step problem isolation chapter (eluents, columns, instruments).
- Snyder, L. R., J. J. Kirkland, and J. L. Glajch. 1997. Practical HPLC Method Development. 2nd ed. Wiley. ISBN 978-0-471-00703-6. — Method-development companion volume with troubleshooting cross-refs.
- Carr, Peter W.. 2009. The new physical chemistry of HPLC. 1764-1772. https://doi.org/10.1016/j.chroma.2008.11.094 [link ↗] — Theoretical basis for diagnosing efficiency losses (mass-transfer, eddy diffusion).
- Heyden, Yvan Vander, et al.. 2009. Robustness of pharmaceutical liquid chromatographic methods. 2120-2129. https://doi.org/10.1016/j.jchromb.2008.10.052 [link ↗] — How to diagnose method failures vs. system failures (Plackett-Burman).
- Engelhardt, Heinz. 2014. 100 Years of Chromatography. 2nd ed. Wiley-VCH. ISBN 978-3-527-33473-5. — Historical context for ghost-peak phenomenology (silica chemistry).
Deskryptory Lipinskiego (struktura)
🧪 Assistente di preparazione della soluzione (Smart Prep) MolGod_PREP_2
Inserisci cosa vuoi preparare — genererò una SOP
📚 Panoramica della letteratura scientifica — CAS 141-78-6MolGod_LITHUB_MAIN
⭐ Risultati principali (letteratura scientifica) 18 publications
141-78-6
— multi-criteria ranking (W12): 30% citazioni · 20% recency · 20% topic · 15% historical · 15% open access.
-
#1Asmae Hbika, Nour Elhouda Daoudi, Abdelhamid Bouyanzer et al. (2022) · PharmaceuticsPerché è importante: Open access
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#2Kulthida Y. Kopolrat, Seri Singthong, Narong Khuntikeo et al. (2022) · Parasites & VectorsPerché è importante: Open access
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#3Bakht Nasir, Muhammad Waleed Baig, Muhammad Majid et al. (2020) · BMC Complementary Medicine and TherapiesPerché è importante: Open access
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#4David Villanueva-Bermejo, Elena Ibáñez, Guillermo Reglero et al. (2015) · The Journal of Supercritical FluidsPerché è importante: Open access
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#5Sónia A. C. Carabineiro, Michalis Konsolakis, George E. Marnellos et al. (2016) · MoleculesPerché è importante: Open access
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#6Chao Cheng, Yang Cong, Cunbin Du et al. (2016) · The Journal of Chemical ThermodynamicsPerché è importante: 104 citations
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#7et al. (2025) · Journal of the American Chemical SocietyPerché è importante: Recente (2025) · open access
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#8Muhammad Rowshanul Habib, Md. Abdul Aziz, Muhammad Rezaul Karim (2010) · Journal of Applied BiomedicinePerché è importante: Open access
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#9et al. (2026) · MoleculesPerché è importante: Recente (2026) · open access
-
#10et al. (2026) · Frontiers in PharmacologyPerché è importante: Recente (2026) · open access
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#11et al. (2025) · ACS OmegaPerché è importante: Recente (2025) · open access
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#12et al. (2025) · Biochemistry Research InternationalPerché è importante: Recente (2025) · open access
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#13Api AM, Belsito D, Botelho D et al. (2022) · Food and chemical toxicology : an international journal published for the British Industrial Biological Research AssociationPerché è importante: Selezionate tramite punteggio multi-criterio (citations + recency + topic + historical + OA).
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#14Hartwig, Andrea, Deutsche Forschungsgemeinschaft. Ständige Senatskommission zur Prüfung Gesundheitsschädlicher Arbeitsstoffe, MAK Commission (2019) · The MAK‐Collection for Occupational Health and SafetyPerché è importante: Open access
-
#15Eliza de Lucas Chazin (2012) · Revista Virtual de QuímicaPerché è importante: Open access
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#16Holt AK; Veeser AM; Poklis JL et al. (2024) · Journal of analytical toxicologyPerché è importante: Must-cite (canone) · recente (2024)
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#17et al. (2026) · Bioorganic ChemistryPerché è importante: Recente (2026)
-
#18(2012) · Sax's Dangerous Properties of Industrial MaterialsPerché è importante: Selezionate tramite punteggio multi-criterio (citations + recency + topic + historical + OA).
📚 RIFERIMENTI (Bibliografia complessiva, Chicago Author-Date) 127 elementi
Tutte le fonti scientifiche citate negli accordion sopra per il CAS 141-78-6.Formato: Chicago Manual of Style 17ª ed., sistema Author-Date.
🗄️ Banche dati scientifiche
- NIST. n.d. NIST Chemistry WebBook: CAS 141-78-6. Gaithersburg, MD: National Institute of Standards and Technology. https://webbook.nist.gov/cgi/cbook.cgi?ID=141-78-6.
- AIST. n.d. Spectral Database for Organic Compounds (SDBS): CAS 141-78-6. Tsukuba, Japan: National Institute of Advanced Industrial Science and Technology. https://sdbs.db.aist.go.jp/.
- Linstrom, Peter J., and William G. Mallard, eds. n.d. NIST Chemistry WebBook: NIST Standard Reference Database Number 69. Gaithersburg, MD: National Institute of Standards and Technology. https://doi.org/10.18434/T4D303.
- PubChem. n.d. PubChem Compound Summary: CAS 141-78-6. Bethesda, MD: National Center for Biotechnology Information (NCBI), National Library of Medicine. https://pubchem.ncbi.nlm.nih.gov/#query=141-78-6.
- U.S. EPA. n.d. CompTox Chemicals Dashboard: CAS 141-78-6. Research Triangle Park, NC: U.S. Environmental Protection Agency. https://comptox.epa.gov/dashboard/chemical/details/DTXSID1022001.
📐 Standard / Linee guida
- ICH. 2003. "Stability Testing of New Drug Substances and Products: Q1A(R2)." Geneva: International Council for Harmonisation of Technical Requirements for Pharmaceuticals for Human Use. https://database.ich.org/sites/default/files/Q1A%28R2%29%20Guideline.pdf.
- National Fire Protection Association (NFPA). 2024. "NFPA 30: Flammable and Combustible Liquids Code." NFPA, Quincy, MA. https://www.nfpa.org/codes-and-standards/all-codes-and-standards/list-of-codes-and-standards/detail?code=30.
- Occupational Safety and Health Administration (OSHA). 2023. "29 CFR 1910.106 — Flammable Liquids." U.S. Department of Labor, Federal Register. https://www.osha.gov/laws-regs/regulations/standardnumber/1910/1910.106.
- European Chemicals Agency (ECHA). 2024. "Annex VI to Regulation (EC) No 1272/2008 (CLP) — Harmonised Classification and Labelling." ECHA, Helsinki / Official Journal of the European Union. https://echa.europa.eu/regulations/clp/clp-classification.
- European Committee for Standardization (CEN). 2016. "EN 374-1:2016 — Protective gloves against dangerous chemicals and micro-organisms — Part 1: Terminology and performance requirements for chemical risks." CEN, Brussels. https://standards.cencenelec.eu/dyn/www/f?p=205:110:::::FSP_PROJECT,FSP_ORG_ID:38536,6080&cs=1B0DAA8B85DF42E4A2C70E5D71F0BFA32.
- European Committee for Standardization (CEN). 2001. "EN 166:2001 — Personal eye-protection — Specifications." CEN, Brussels. https://standards.cencenelec.eu/dyn/www/f?p=CEN:110:0::::FSP_PROJECT:6541&cs=1F1A4E0A78C4DB6A28DBE2E8C29D89DCF.
- European Committee for Standardization (CEN). 2009. "EN 14605:2005+A1:2009 — Protective clothing against liquid chemicals — Performance requirements for clothing with liquid-tight (Type 3) or spray-tight (Type 4) connections." CEN, Brussels. https://standards.cencenelec.eu/dyn/www/f?p=CEN:110:0::::FSP_PROJECT:21581&cs=1A04A2D3C7CC58E9E6CB58D55F7EBFB7E.
- National Institute for Occupational Safety and Health (NIOSH). 2017. "Recommendations for Chemical Protective Clothing: A Companion to the NIOSH Pocket Guide." U.S. Department of Health & Human Services / CDC. https://www.cdc.gov/niosh/ncpc/default.html.
- Occupational Safety and Health Administration (OSHA). 2011. "Personal Protective Equipment — General requirements." U.S. Department of Labor — 29 CFR 1910.132. https://www.osha.gov/laws-regs/regulations/standardnumber/1910/1910.132.
📖 Libri
- Hansen, Charles M. 2007. Hansen Solubility Parameters: A User's Handbook, 2nd ed.. Boca Raton, FL: CRC Press. https://www.routledge.com/Hansen-Solubility-Parameters-A-Users-Handbook/Hansen/p/book/9780849372483.
- Barton, Allan F. M. 1991. CRC Handbook of Solubility Parameters and Other Cohesion Parameters: 2nd ed.. Boca Raton, FL: CRC Press. https://www.routledge.com/CRC-Handbook-of-Solubility-Parameters-and-Other-Cohesion-Parameters/Barton/p/book/9780849301766.
- Connors, Kenneth A., Gordon L. Amidon, and Valentino J. Stella. 1986. Chemical Stability of Pharmaceuticals: A Handbook for Pharmacists, 2nd ed.. New York: Wiley. https://doi.org/10.1002/0471734683.
- Rumble, John R., ed. 2019. CRC Handbook of Chemistry and Physics: 100th Edition. Boca Raton, FL: CRC Press. https://hbcp.chemnetbase.com/.
- Urben, Peter G. 2017. Bretherick's Handbook of Reactive Chemical Hazards, 8th Edition. Academic Press / Elsevier, Oxford. https://www.sciencedirect.com/book/9780081010594.
📄 Articoli scientifici (peer-reviewed)
- Stefanis, Emmanuel, and Costas Panayiotou. 2008. "Prediction of Hansen Solubility Parameters with a New Group-Contribution Method." International Journal of Thermophysics 29: 568-585. https://doi.org/10.1007/s10765-008-0415-z.
- Stoll, Vincent S., and John S. Blanchard. 1990. "Buffers: Principles and Practice: In Methods in Enzymology, vol. 182." San Diego: Academic Press. https://doi.org/10.1016/0076-6879(90)82008-P.
🌐 Siti web
- ECHA. 2023. "Guidance on the Application of the CLP Criteria." European Chemicals Agency. https://echa.europa.eu/guidance-documents/guidance-on-clp.
- European Parliament. 2006. "Regulation (EC) No 1907/2006 (REACH)." Official Journal of the European Union L 396: 1–849.
- ECHA. 2023. "Candidate List of Substances of Very High Concern for Authorisation." European Chemicals Agency. https://echa.europa.eu/candidate-list-table.
- European Parliament. 2008. "Regulation (EC) No 1272/2008 on Classification, Labelling and Packaging of Substances and Mixtures (CLP)." Official Journal of the European Union L 353: 1–1355.
- ECHA. 2017. "Guidance on the Compilation of Safety Data Sheets." Version 3.1. European Chemicals Agency. ECHA-17-G-01-EN. https://echa.europa.eu/documents/10162/23047722/sds_en.pdf.
- ECHA. 2022. "Restrictions Under REACH — Annex XVII." European Chemicals Agency. https://echa.europa.eu/substances-restricted-under-reach.
- United Nations. 2021. Globally Harmonized System of Classification and Labelling of Chemicals (GHS). 9th revised ed. ST/SG/AC.10/30/Rev.9. New York and Geneva: United Nations. https://unece.org/ghs-rev9-2021.
- ECHA. 2020. "Understanding REACH." European Chemicals Agency. https://echa.europa.eu/regulations/reach/understanding-reach.
- ECHA — Zalacznik VI do CLP (klasyfikacja zharmonizowana, ATP 23; 2026-07-07) https://echa.europa.eu/information-on-chemicals/annex-vi-to-clp.
- U.S. Occupational Safety and Health Administration (2024) — 29 CFR 1910.120 — Hazardous Waste Operations and Emergency Response (HAZWOPER) https://www.osha.gov/hazwoper.
- National Fire Protection Association (2018) — NFPA 472: Standard for Competence of Responders to Hazardous Materials/Weapons of Mass Destruction Incidents https://www.nfpa.org/codes-and-standards/nfpa-472.
- European Parliament and Council (2012) — Directive 2012/18/EU on the Control of Major-Accident Hazards Involving Dangerous Substances (Seveso III) https://eur-lex.europa.eu/legal-content/EN/TXT/?uri=celex:32012L0018.
- U.S. National Institute for Occupational Safety and Health (2024) — NIOSH Pocket Guide to Chemical Hazards https://www.cdc.gov/niosh/npg/.
- European Chemicals Agency (2020) — Guidance on the Compilation of Safety Data Sheets (SDS), Version 3.1 https://echa.europa.eu/documents/10162/23047722/sds_en.pdf.
- Snyder, Lloyd R., John W. Dolan, and Joseph J. Kirkland. 2010. Introduction to Modern Liquid Chromatography. Wiley.
- Schoenmakers, Peter J.. 1986. Optimization of Chromatographic Selectivity: A Guide to Method Development. Elsevier.
- Snyder, L. R., and J. W. Dolan. 2007. High-Performance Gradient Elution: The Practical Application of the Linear-Solvent-Strength Model. Wiley.
- Nikitas, Pavlos, and Adrian Pappa-Louisi. 2009. "Retention models for isocratic and gradient elution in reversed-phase liquid chromatography." Journal of Chromatography A 1216: 1737-1755. https://doi.org/10.1016/j.chroma.2008.10.005.
- Carr, Peter W.. 2009. "The new physical chemistry of HPLC." Journal of Chromatography A 1216: 1764-1772. https://doi.org/10.1016/j.chroma.2008.11.094.
- Dong, Michael W.. 2019. HPLC and UHPLC for Practicing Scientists. Wiley. https://doi.org/10.1002/9781119313793.
- Wu, Naijun, and Anton M. Clausen. 2007. "Fundamental and practical aspects of ultrahigh pressure liquid chromatography for fast separations." Journal of Separation Science 30: 1167-1182. https://doi.org/10.1002/jssc.200700026.
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- Dolan, John W.. 2013. "When to Modify Method Conditions." LCGC North America 31: 192-199. https://www.chromatographyonline.com/view/when-modify-method-conditions.
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- Foley, Joe P., and John G. Dorsey. 1983. "Equations for calculation of chromatographic figures of merit for ideal and skewed peaks." https://doi.org/10.1021/ac00255a033.
- Snyder, Lloyd R., Joseph J. Kirkland, and John W. Dolan. 2010. "Introduction to Modern Liquid Chromatography." Wiley. https://doi.org/10.1002/9780470508183.
- Dolan, John W.. 2003. "Peak tailing and resolution." https://www.chromatographyonline.com/view/peak-tailing-and-resolution.
- Vivó-Truyols, Gabriel, and Hans-Gerd Janssen. 2010. "Probabilistic approach to peak deconvolution in chromatography." https://doi.org/10.1021/ac101742z.
- Kromidas, Stavros. 2017. "HPLC Made to Measure: A Practical Handbook for Optimization." Wiley-VCH.
- Heyden, Yvan Vander, et al.. 2009. "Robustness of pharmaceutical liquid chromatographic methods." https://doi.org/10.1016/j.jchromb.2008.10.052.
- United States Pharmacopeial Convention. 2024. "USP <621> Chromatography." In United States Pharmacopeia and National Formulary, USP 47-NF 42. Rockville, MD: USP. https://www.uspnf.com/.
- European Pharmacopoeia Commission. 2024. "2.2.46 Chromatographic Separation Techniques." In European Pharmacopoeia, 11th ed. Strasbourg: Council of Europe — EDQM. https://www.edqm.eu/en/european-pharmacopoeia-ph-eur-11th-edition.
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