ChemInform Abstract: Generation and Reactions of Pyridyllithiums via Br/Li Exchange Reactions Using Continuous Flow Microreactor Systems

A continuous flow microreactor method for generating and carrying out reactions on pyridyllithiums is developed.

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Published inChemInform Vol. 44; no. 29; p. no
Main Authors Nagaki, Aiichiro, Yamada, Daisuke, Yamada, Shigeyuki, Doi, Masatomo, Ichinari, Daisuke, Tomida, Yutaka, Takabayashi, Naofumi, Yoshida, Jun-ichi
Format Journal Article
LanguageEnglish
Published Weinheim WILEY-VCH Verlag 16.07.2013
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Abstract A continuous flow microreactor method for generating and carrying out reactions on pyridyllithiums is developed.
AbstractList A continuous flow microreactor method for generating and carrying out reactions on pyridyllithiums is developed. [PUBLICATION ABSTRACT]
Abstract A continuous flow microreactor method for generating and carrying out reactions on pyridyllithiums is developed.
A continuous flow microreactor method for generating and carrying out reactions on pyridyllithiums is developed.
Author Doi, Masatomo
Tomida, Yutaka
Nagaki, Aiichiro
Yamada, Daisuke
Takabayashi, Naofumi
Ichinari, Daisuke
Yamada, Shigeyuki
Yoshida, Jun-ichi
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References Aiichiro Nagaki, Daisuke Yamada, Shigeyuki Yamada, Masatomo Doi, Daisuke Ichinari, Yutaka Tomida, Naofumi Takabayashi, Jun-ichi Yoshida, Generation and Reactions of Pyridyllithiums via Br/Li Exchange Reactions Using Continuous Flow Microreactor Systems., Aust. J. Chem., 2013, 66, 199-207. DOI: 10.1071/CH12440
2013; 66
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Snippet A continuous flow microreactor method for generating and carrying out reactions on pyridyllithiums is developed.
Abstract A continuous flow microreactor method for generating and carrying out reactions on pyridyllithiums is developed.
A continuous flow microreactor method for generating and carrying out reactions on pyridyllithiums is developed. [PUBLICATION ABSTRACT]
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SubjectTerms C-C bond formation
pyridine derivatives
Title ChemInform Abstract: Generation and Reactions of Pyridyllithiums via Br/Li Exchange Reactions Using Continuous Flow Microreactor Systems
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