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Our research program is focussed on the development of new synthetic methods using organoboron compounds and reactive intermediates. These methods are being applied to the synthesis of biologically active natural products, such as N-heterocyclic natural products and guanidine containing compounds. In addition we are developing new reagents and reactions that can be applied for combinatorial chemistry.
The addition of aryl, alkenyl and alkyl organometallic species such as organolithium and Grignard reagents to carbonyl groups is arguably the most important C-C bond forming reaction in organic chemistry. This reaction suffers from two main limitations however, (i) no control of enantioselectivity and (ii) a lack of stability of these reagents to air, water and heat. We are working on organoboron alternatives to organolithium and Grignard reagents, and have had considerable recent successes in achieving additions of alkenyl and aryl boron reagents using transition metal catalysis. This methodology is expected to be of considerable utility for use in combinatorial synthesis. In addition, we have shown that potassium allyl and crotyl trifluoroborates, as highly reactive reagents for diastereoselective additions to aldehydes, ketones and other electrophilic species.
The addition of aryl, alkenyl and alkyl organometallic species such as organolithium and Grignard reagents to carbonyl groups is arguably the most important C-C bond forming reaction in organic chemistry. This reaction suffers from two main limitations however, (i) no control of enantioselectivity and (ii) a lack of stability of these reagents to air, water and heat. We are working on organoboron alternatives to organolithium and Grignard reagents, and have had considerable recent successes in achieving additions of alkenyl and aryl boron reagents using transition metal catalysis. This methodology is expected to be of considerable utility for use in combinatorial synthesis. In addition, we have shown that potassium allyl and crotyl trifluoroborates, as highly reactive reagents for diastereoselective additions to aldehydes, ketones and other electrophilic species.
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论文共 108 篇作者统计合作学者相似作者
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Michał Koziarski, Andrei Rekesh, Dmytro Shevchuk,Almer van der Sloot,Piotr Gaiński,Yoshua Bengio,Cheng-Hao Liu,Mike Tyers,Robert A. Batey
CoRR (2024)
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Yu-Qian Mao, Shahrzad Jahanshahi, Ramy Malty, David A J Van Ommen, Yimei Wan, Trevor M Morey, Stephanie H W Chuang, Veronika Pavlova, Choudhary Ahmed, Subha Dahal, Funing Lin, Maria Mangos, Jocelyn Nurtanto, Yuetong Song, Terek Been, Natasha Christie-Holmes, Scott D Gray-Owen, Mohan Babu, Amy P Wong,Robert A Batey,Liliana Attisano,Alan Cochrane,Walid A Houry
Communications biologyno. 1 (2024): 1460-1460
SCIENTIFIC DATAno. 1 (2024)
Ganna Posternak,Xiaojing Tang,Pierre Maisonneuve,Ting Jin,Hugo Lavoie,Salima Daou,Stephen Orlicky,Theo Goullet de Rugy,Lauren Caldwell,Kin Chan,Ahmed Aman,Michael Prakesch,Gennady Poda,Pavel Mader,Cassandra Wong,Stefan Maier,Julia Kitaygorodsky,Brett Larsen,Karen Colwill,Zhe Yin,Derek F. Ceccarelli,Robert A. Batey,Mikko Taipale,Igor Kurinov,David Uehling,Jeff Wrana,Daniel Durocher,Anne-Claude Gingras,Rima Al-Awar,Marc Therrien,Frank Sicheri
Mark F. Mabanglo,Elisa Leung,Siavash Vahidi,Thiago V. Seraphim,Bryan T. Eger,Steve Bryson,Vaibhav Bhandari, Jin Lin Zhou,Yu-Qian Mao,Kamran Rizzolo,Marim M. Barghash,Jordan D. Goodreid,Sadhna Phanse,Mohan Babu,Leandro R. S. Barbosa,Carlos H. I. Ramos,Robert A. Batey,Lewis E. Kay,Emil F. Pai,Walid A. Houry
CHEMICAL & ENGINEERING NEWSno. 3 (2019): 45-45
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#Papers: 110
#Citation: 3893
H-Index: 27
G-Index: 62
Sociability: 6
Diversity: 1
Activity: 0
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