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Realizing 1,1-Dehydration of Secondary Alcohols to Carbenes: Pyrrolidin-2-ols as a Source of Cyclic (Alkyl)(Amino)Carbenes.


ABSTRACT: Herein we report secondary pyrrolidin-2-ols as a source of cyclic (alkyl)(amino)carbenes (CAAC) for the synthesis of CAAC-CuI -complexes and cyclic thiones when reacted with CuI -salts and elemental sulfur, respectively, under reductive elimination of water from the carbon(IV)-center. This result demonstrates a convenient and facile access to CAAC-based CuI -salts, which are well known catalysts for different organic transformations. It further establishes secondary alcohols to be a viable source of carbenes-realizing after 185 years Dumas' dream who tried to prepare the parent carbene (CH2 ) by 1,1-dehydration of methanol. Addressed is also the reactivity of water towards CAACs, which proceeds through an oxidative addition of the O-H bond to the carbon(II)-center. This emphasizes the ability of carbon-compounds to mimic the reactivity of transition-metal complexes: reversible oxidative addition and reductive elimination of the O-H bond to/from the C(II)/C(IV)-centre.

SUBMITTER: Das A 

PROVIDER: S-EPMC9400972 | biostudies-literature | 2022 Jul

REPOSITORIES: biostudies-literature

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Realizing 1,1-Dehydration of Secondary Alcohols to Carbenes: Pyrrolidin-2-ols as a Source of Cyclic (Alkyl)(Amino)Carbenes.

Das Ayan A   Elvers Benedict J BJ   Nayak Mithilesh Kumar MK   Chrysochos Nicolas N   Anga Srinivas S   Kumar Amar A   Rao D Krishna DK   Narayanan Tharangattu N TN   Schulzke Carola C   Yildiz Cem B CB   Jana Anukul A  

Angewandte Chemie (International ed. in English) 20220506 28


Herein we report secondary pyrrolidin-2-ols as a source of cyclic (alkyl)(amino)carbenes (CAAC) for the synthesis of CAAC-Cu<sup>I</sup> -complexes and cyclic thiones when reacted with Cu<sup>I</sup> -salts and elemental sulfur, respectively, under reductive elimination of water from the carbon(IV)-center. This result demonstrates a convenient and facile access to CAAC-based Cu<sup>I</sup> -salts, which are well known catalysts for different organic transformations. It further establishes second  ...[more]

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