Benzenemethanamine, N-(1-methylethylidene)-

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CAS: 1197-48-4
MF: C10H13N
MW: 147.21692
Synonyms: Benzenemethanamine, N-(1-methylethylidene)-

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David E. Bergbreiter

Texas A&M University
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Steven L. Suib

University of Connecticut
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M. Prechtl

University of Cologne
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Andrew J. Clark

University of Warwick
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Paul Wilson

University of Warwick
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Wilfried M.A. Niessen

VU University Amsterdam
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Co-reporter: Cornelius T. Martha, Jan-Carel Hoogendoorn, Hubertus Irth, Wilfried M.A. Niessen
pp: 623-631
Publication Date(Web):15 May 2011
DOI: 10.1016/j.talanta.2011.01.051
Current development in catalyst discovery includes combinatorial synthesis methods for the rapid generation of compound libraries combined with high-throughput performance-screening methods to determine the associated activities. Of these novel methodologies, mass spectrometry (MS) based flow chemistry methods are especially attractive due to the ability to combine sensitive detection of the formed reaction product with identification of introduced catalyst complexes. Recently, such a mass spectrometry based continuous-flow reaction detection system was utilized to screen silver-adducted ferrocenyl bidentate catalyst complexes for activity in a multicomponent synthesis of a substituted 2-imidazoline. Here, we determine the merits of different ionization approaches by studying the combination of sensitive detection of product formation in the continuous-flow system with the ability to simultaneous characterize the introduced [ferrocenyl bidentate+Ag]+ catalyst complexes. To this end, we study the ionization characteristics of electrospray ionization (ESI), atmospheric-pressure chemical ionization (APCI), no-discharge APCI, dual ESI/APCI, and dual APCI/no-discharge APCI. Finally, we investigated the application potential of the different ionization approaches by the investigation of ferrocenyl bidentate catalyst complex responses in different solvents.

Jeroen Kool

Vrije Universiteit Amsterdam
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Romano V. A. Orru

VU University Amsterdam
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AiJu Xu

Inner Mongolia Normal University
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MeiLin Jia

Inner Mongolia Normal University
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