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个人简介
Bruce Lipshutz has been at UC Santa Barbara since joining the faculty as an Assistant Professor in 1979. Much of his career has been focused on developing new reagents and technologies that have broad appeal in the synthetic community, many of which are now, or will soon be, commercially available (e.g., SEM-Cl, “Higher Order Cuprates”, “Cuprate-in-a-Bottle”, DCAD, “Copper Hydride-in-a-Bottle”, Ni/C, Cu/C, PTS, TPGS-750-M, etc.). The group’s efforts have, in part, shifted with an emphasis on “green chemistry”. Thus, there is ongoing development of a mix of methods in heterogeneous catalysis, including newly developed mixed metal-supported cross-coupling reagents, and homogeneous catalysis. The latter focuses on micellar catalysis to effect transition metal-catalyzed cross-couplings in water at room temperature, with an accent on development of new “designer surfactants.” Also being actively pursued are projects in total or partial synthesis of biaryls that possess axial chirality (e.g., the A-B biaryl section of vancomycin, and the antimalarial korupensamines and related targets), and syntheses associated with, and analogs derived from, coenzyme Q10.
研究兴趣
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Trends in Chemistry (2024)
ACS SUSTAINABLE CHEMISTRY & ENGINEERINGno. 5 (2024): 1997-2008
JACS AUno. 2 (2024): 680-689
Chemical scienceno. 24 (2024): 9016-9025
Trends in Chemistry (2024)
Karthik Iyer, Kylee Dismuke Rodriguez, Robert Lammert, Jordan Yirak, John Saunders,Rahul Kavthe,Donald Aue,Bruce Lipshutz
crossref(2024)
GREEN CHEMISTRYno. 2 (2024): 739-752
JACS Auno. 2 (2024): 680-689
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