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Comparison of Two Zinc Hydride Precatalysts for Selective Dehydrogenative Borylation of Terminal Alkynes: A Detailed Mechanistic Study.


ABSTRACT: The conjugated bis-guanidinate-stabilized zinc hydride complex (I)-precatalyzed chemoselective dehydroborylation of a wide array of terminal alkynes with excellent yields is reported. Further, precatalyst I is compared with a newly synthesized DiethylNacNac zinc hydride precatalyst (III) for selective dehydroborylation of terminal alkynes, and it is discovered that precatalyst I is more active than III. We have studied intra- and intermolecular chemoselective dehydroborylation of terminal alkynes over other reducible functionalities such as alkene, ester, isocyanide, nitro, and heterocycles. The highly efficient precatalyst I shows a turnover number of 48.5 and turnover frequency of up to 60.5 h-1 in the dehydroborylation of 1-ethynyl-4-fluorobenzene (1i). A plausible mechanism for selective dehydrogenative borylation of alkynes has been proposed based on active catalyst isolation and a series of stoichiometric reactions.

SUBMITTER: Sahoo RK 

PROVIDER: S-EPMC9878541 | biostudies-literature | 2023 Jan

REPOSITORIES: biostudies-literature

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Comparison of Two Zinc Hydride Precatalysts for Selective Dehydrogenative Borylation of Terminal Alkynes: A Detailed Mechanistic Study.

Sahoo Rajata Kumar RK   Patro Arukela Ganesh AG   Sarkar Nabin N   Nembenna Sharanappa S  

ACS omega 20230110 3


The conjugated bis-guanidinate-stabilized zinc hydride complex (<b>I</b>)-precatalyzed chemoselective dehydroborylation of a wide array of terminal alkynes with excellent yields is reported. Further, precatalyst <b>I</b> is compared with a newly synthesized <sup>Diethyl</sup>NacNac zinc hydride precatalyst (<b>III</b>) for selective dehydroborylation of terminal alkynes, and it is discovered that precatalyst <b>I</b> is more active than <b>III</b>. We have studied intra- and intermolecular chemo  ...[more]

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