Rajpurohit Jitendrasingh, Shukla Pragya, Kumar Pardeep, Das Chinmoy, Vaidya Shefali, Sundararajan Mahesh, Shanmugam Muralidharan, Shanmugam Maheswaran
Department of Chemistry , Indian Institute of Technology Bombay , Powai - 400076 , Mumbai , Maharashtra , India.
Theoretical Chemistry Section , Bhabha Atomic Research Centre , Mumbai - 400 085 , India.
Inorg Chem. 2019 May 6;58(9):6257-6267. doi: 10.1021/acs.inorgchem.9b00466. Epub 2019 Apr 22.
The reaction of [Ni(COD)] (COD; cyclooctadiene) in THF with the NNN-pincer ligand bis(imino)pyridyl (L) reveals a susceptibility to oxidation in an inert atmosphere ([O] level <0.5 ppm), resulting in a transient Ni:dioxygen adduct. This reactive intermediate abstracts a hydrogen atom from THF and stabilizes an uncommon Ni(III) complex. The complex is crystallographically characterized by a molecular formula of [Ni(L)(OH)] (1). Various isotopically labeled experiments (O/O) assertively endorse the origin of terminal oxygen based ligand in 1 due to the activation of molecular dioxygen. The presence of proton bound to the terminal oxygen in 1 is well supported by NMR, IR spectroscopy, DFT calculations, and hydrogen atom transfer (HAT) reactions promoted by 1. The observation of shakeup satellite peaks for the primary photoelectron lines of Ni(2p) in the X-ray photoelectron spectroscopy (XPS) unambiguously confirms the paramagnetic signature associated with the distorted square planar nickel ion, which is consistent with the trivalent oxidation state assigned for the nickel ion in 1. The variable temperature magnetic susceptibility data of 1 shows dominant antiferromagnetic interactions exist among the paramagnetic centers, resulting in an overall S = 1/2 ground state. Variable temperature X-band EPR studies performed on 1 show evidence for the S = 1/2 ground state, which is consistent with magnetic data. The unusual g-tensor extracted for the ground state S = 1/2 is analyzed under a strong exchange limit of spin-coupled centers. The electronic structure predicted for 1 is in good agreement with theoretical calculations.
[Ni(COD)](COD:环辛二烯)在四氢呋喃(THF)中与NNN-钳形配体双(亚氨基)吡啶(L)反应,发现在惰性气氛([O]水平<0.5 ppm)中易被氧化,生成一种瞬态镍:双氧加合物。这种反应性中间体从THF中提取一个氢原子,并稳定一种不常见的Ni(III)配合物。该配合物通过分子式为[Ni(L)(OH)](1)的晶体学表征。各种同位素标记实验(O/O)有力地支持了1中基于末端氧的配体起源于分子双氧的活化。1中与末端氧结合的质子的存在得到了核磁共振(NMR)、红外光谱(IR)、密度泛函理论(DFT)计算以及1促进的氢原子转移(HAT)反应的有力支持。X射线光电子能谱(XPS)中Ni(2p)主光电子线的振激卫星峰的观察明确证实了与扭曲的平面正方形镍离子相关的顺磁特征,这与为1中的镍离子指定的三价氧化态一致。1的变温磁化率数据表明顺磁中心之间存在主导的反铁磁相互作用,导致整体基态S = 1/2。对1进行的变温X波段电子顺磁共振(EPR)研究显示了S = 1/2基态的证据,这与磁性数据一致。在自旋耦合中心的强交换极限下分析了基态S = 1/2提取的异常g张量。为1预测的电子结构与理论计算结果高度一致。