Mao Xiaofeng, Qiu Shuang, Guo Rui, Dai Yuyang, Zhang Jie, Kong Lingbing, Xie Zuowei
Department of Chemistry and State Key Laboratory of Synthetic Chemistry, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong 999077, China.
School of Chemistry and Chemical Engineering, Shandong University, Jinan 250100, China.
J Am Chem Soc. 2024 Apr 17;146(15):10917-10924. doi: 10.1021/jacs.4c01934. Epub 2024 Apr 8.
BN/CC isosterism is an effective strategy to build hybrid functional molecules with unique properties. In contrast to the alkynyl iminium salts derived from cyclic (alkyl)(amino)carbenes (CAACs) that feature only one reversible reduction wave, the isoelectronic cationic CAAC-iminoboryl adducts could be singly and doubly reduced smoothly. Both the resultant neutral radical and anionic azaborataallenes bear NBC-mixed allenic structures. The former radical has a high spin-density of 0.55 at C carbon, yet exhibits formal boron-centered radical reactivity. The latter azaborataallenes feature the nucleophilic C center and polar N(δ)═B(δ)═C(δ) unit, and readily undergo nucleophilic substitution, isocyanide insertion, dipolar addition and cycloaddition reactions etc. The N-substituents have been shown to have a significant influence on the solid-state structure, thermal stability, and reactivity of azaborataallenes. This work showcases the allenic BN-unsaturated species as versatile building blocks in organic synthesis.
硼氮/碳碳等电子体异构是构建具有独特性质的杂化功能分子的有效策略。与源自环状(烷基)(氨基)卡宾(CAACs)的炔基亚胺盐不同,后者仅具有一个可逆还原波,而异电子阳离子CAAC-亚氨基硼加合物可以顺利地进行单重和双重还原。生成的中性自由基和阴离子氮杂硼丙二烯均具有氮硼碳混合的丙二烯结构。前者自由基在C碳处具有0.55的高自旋密度,但表现出以硼为中心的自由基反应活性。后者氮杂硼丙二烯具有亲核性的C中心和极性的N(δ)═B(δ)═C(δ)单元,并容易发生亲核取代、异氰化物插入、偶极加成和环加成反应等。已表明N-取代基对氮杂硼丙二烯化物的固态结构、热稳定性和反应活性有显著影响。这项工作展示了丙二烯型硼氮不饱和物种作为有机合成中通用的结构单元。