Department of Chemistry, Indian Institute of Technology Bombay, Powai, Mumbai, 400076, India.
Chem Asian J. 2018 Jun 18;13(12):1582-1593. doi: 10.1002/asia.201800308. Epub 2018 May 17.
An unprecedented reactivity profile of biochemically relevant R-benzofuroxan (R=H, Me, Cl), with high structural diversity and molecular complexity on a selective {Ru(acac) } (acac=acetylacetonate) platform, in conjugation with EtOH solvent mediation, is revealed. This led to the development of monomeric [Ru (acac) (L )] (1 a-1 c; L =2-nitrosoanilido derivatives) and dimeric [{Ru (acac) } (L )] (2 a-2 b; L =(1E,2E)-N ,N -bis(2-nitrosophenyl)ethane-1,2-diimine derivatives) complexes in one pot with a change in the metal redox conditions. The functionalization of benzofuroxan in 1 and 2 implied in situ reduction of N=O to NH in the former and solvent-assisted multiple N-C coupling in the latter. The aforesaid transformation processes were authenticated through structural elucidation of representative complexes, and evaluated by their spectroscopic/electrochemical features, along with C D OD labeling and monitoring of the impact of substituents (R) in the benzofuroxan framework on the product distribution process. The noninnocent potential of newly developed L and L in 1 and 2, respectively, was also probed by spectroelectrochemistry in combination with DFT calculations.
本文揭示了生物化学相关的 R-苯并呋咱(R=H、Me、Cl)在选择性{Ru(acac)}(acac=乙酰丙酮盐)平台上具有前所未有的反应性谱,具有高度的结构多样性和分子复杂性,并结合乙醇溶剂介导作用。这导致了单体[Ru(acac)(L)](1a-1c;L=2-亚硝基苯胺衍生物)和二聚体[{Ru(acac)}(L)](2a-2b;L=(1E,2E)-N,N-双(2-亚硝基苯基)乙二亚胺衍生物)在一个锅中的一锅法合成,金属氧化还原条件发生变化。1 和 2 中苯并呋咱的功能化意味着前者中 N=O 原位还原为 NH,后者中溶剂辅助的多重 N-C 偶联。通过对代表性配合物的结构阐明,以及通过其光谱/电化学特征以及 CD OD 标记和监测苯并呋咱骨架中取代基(R)对产物分布过程的影响,对上述转化过程进行了验证。通过结合光谱电化学和 DFT 计算,还分别对 1 和 2 中新型 L 和 L 的非无辜潜力进行了探究。