Bains Amreen K, Kundu Abhishek, Maiti Debabrata, Adhikari Debashis
Department of Chemical Sciences, Indian Institute of Science Education and Research (IISER)-Mohali SAS Nagar Punjab-140306 India
Department of Chemistry, Indian Institute of Technology Bombay, Powai Mumbai-400076 India.
Chem Sci. 2021 Oct 5;12(42):14217-14223. doi: 10.1039/d1sc04261k. eCollection 2021 Nov 3.
A well-defined, bench-stable nickel catalyst is presented here, that can facilitate double alkylation of a methyl ketone to realize a wide variety of cycloalkanes. The performance of the catalyst depends on the ligand redox process comprising an azo-hydrazo couple. The source of the bis electrophile in this double alkylation is a 1,-diol, so that (+1)-membered cycloalkanes can be furnished in a stereoselective manner. The reaction follows a cascade of dehydrogenation/hydrogenation reactions and adopts a borrowing hydrogen (BH) method. A thorough mechanistic analysis including the interception of key radical intermediates and DFT calculations supports the ligand radical-mediated dehydrogenation and hydrogenation reactions, which is quite rare in BH chemistry. In particular, this radical-promoted hydrogenation is distinctly different from conventional hydrogenations involving a metal hydride and complementary to the ubiquitous two-electron driven dehydrogenation/hydrogenation reactions.
本文介绍了一种定义明确、在实验台上稳定的镍催化剂,该催化剂可促进甲基酮的双烷基化反应,以实现多种环烷烃的合成。催化剂的性能取决于包含偶氮-连氮偶联的配体氧化还原过程。这种双烷基化反应中双亲电试剂的来源是1, -二醇,因此可以立体选择性地提供( +1 )元环烷烃。该反应遵循一系列脱氢/氢化反应,并采用借氢(BH)方法。包括关键自由基中间体的捕获和密度泛函理论(DFT)计算在内的深入机理分析支持了配体自由基介导的脱氢和氢化反应,这在BH化学中非常罕见。特别是,这种自由基促进的氢化反应与涉及金属氢化物的传统氢化反应明显不同,并且与普遍存在的双电子驱动的脱氢/氢化反应互补。