Mass Spectrometry Based Approach for Organic Synthesis Monitoring.


Journal

Analytical chemistry
ISSN: 1520-6882
Titre abrégé: Anal Chem
Pays: United States
ID NLM: 0370536

Informations de publication

Date de publication:
17 09 2019
Historique:
pubmed: 14 8 2019
medline: 14 8 2019
entrez: 13 8 2019
Statut: ppublish

Résumé

Current mass spectrometry-based methodologies for synthetic organic reaction monitoring largely use electrospray ionization (ESI), or other related atmospheric pressure ionization-based approaches. Monitoring of complex, heterogeneous systems may be problematic because of sampling hardware limitations, and many relevant analytes (neutrals) exhibit poor ESI performance. An alternative monitoring strategy addressing this significant impasse is condensed phase membrane introduction mass spectrometry using liquid electron ionization (CP-MIMS-LEI). In CP-MIMS, a semipermeable silicone membrane selects hydrophobic neutral analytes, rejecting particulates and charged chemical components. Analytes partition through the membrane, and are then transported to the LEI interface for sequential nebulization, vaporization, and ionization. CP-MIMS and LEI are both ideal for continuous monitoring applications of hydrophobic neutral molecules. We demonstrate quantitative reaction monitoring of harsh, complex reaction mixtures (alkaline, acidic, heterogeneous) in protic and aprotic organic solvents. Also presented are solvent-membrane compatibility investigations and, in situ quantitative monitoring of catalytic oxidation and alkylation reactions.

Identifiants

pubmed: 31403767
doi: 10.1021/acs.analchem.9b02681
doi:

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

11916-11922

Auteurs

Veronica Termopoli (V)

LC-MS Laboratory, Department of Pure and Applied Sciences , University of Urbino Carlo Bo , Urbino 61029 , Italy.

Elena Torrisi (E)

Biomolecular Sciences Department , University of Urbino Carlo Bo , Urbino 61029 , Italy.

Giorgio Famiglini (G)

LC-MS Laboratory, Department of Pure and Applied Sciences , University of Urbino Carlo Bo , Urbino 61029 , Italy.

Pierangela Palma (P)

LC-MS Laboratory, Department of Pure and Applied Sciences , University of Urbino Carlo Bo , Urbino 61029 , Italy.
Applied Environmental Research Laboratories (AERL), Chemistry Department , Vancouver Island University , Nanaimo , British Columbia V9R 5S5 , Canada.

Giovanni Zappia (G)

Biomolecular Sciences Department , University of Urbino Carlo Bo , Urbino 61029 , Italy.

Achille Cappiello (A)

LC-MS Laboratory, Department of Pure and Applied Sciences , University of Urbino Carlo Bo , Urbino 61029 , Italy.
Applied Environmental Research Laboratories (AERL), Chemistry Department , Vancouver Island University , Nanaimo , British Columbia V9R 5S5 , Canada.

Gregory W Vandergrift (GW)

Applied Environmental Research Laboratories (AERL), Chemistry Department , Vancouver Island University , Nanaimo , British Columbia V9R 5S5 , Canada.
Chemistry Department , University of Victoria , Victoria , British Columbia V8P 5C2 , Canada.

Misha Zvekic (M)

Applied Environmental Research Laboratories (AERL), Chemistry Department , Vancouver Island University , Nanaimo , British Columbia V9R 5S5 , Canada.

Erik T Krogh (ET)

Applied Environmental Research Laboratories (AERL), Chemistry Department , Vancouver Island University , Nanaimo , British Columbia V9R 5S5 , Canada.
Chemistry Department , University of Victoria , Victoria , British Columbia V8P 5C2 , Canada.

Chris G Gill (CG)

Applied Environmental Research Laboratories (AERL), Chemistry Department , Vancouver Island University , Nanaimo , British Columbia V9R 5S5 , Canada.
Chemistry Department , University of Victoria , Victoria , British Columbia V8P 5C2 , Canada.
Chemistry Department , Simon Fraser University , Burnaby , British Columbia V5A 1S6 , Canada.
Department of Environmental and Occupational Health Sciences , University of Washington , Seattle , Washington 98195 , United States.

Classifications MeSH