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A unified understanding of the direct coordination of NO to first-transition-row metal centers in metal-ligand complexes

机译:对金属配体复合物中NO直接转换排金属中心的直接协调的统一理解

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摘要

The binding of nitric oxide (NO) to heme-proteins is an important biochemical process involved in a variety of physiological functions. Here, using hybrid density-functional calculations, we systematically investigate the adsorption of NO to first-transition-row metal centers in metal-ligand complexes. Through the comparative study for different transition metal (TM) centers, we provide a unified understanding of the microscopic interactions of NO with the TM centers and related chemical trends. We found that as the atomic number of the TM center increases, the binding strength of NO is largely reduced from 207 kJ mol(-1) to near zero due to the low d-orbital energies for late TM centers. The intermolecular spin coupling between the localized spins at the TM center and the NO molecule is generally antiferromagnetic, except for the case of Sc. The spin-spin coupling is determined in such a way to avoid the energy penalty associated with the electron occupation in the antibonding states of the NO-bound complex. The adsorption strength of NO is generally larger than of CO because the unpaired electron of NO occupies the associated bonding state.
机译:一氧化氮(NO)与血红素的蛋白质的结合是参与了多种生理功能的重要的生化过程。在此,使用混合密度函数的计算,我们系统地研究NO的金属 - 配体配合物吸附到第一过渡金属行中心。通过对不同的过渡金属(TM)中心的比较研究,我们不提供与TM中心和相关化学趋势微观相互作用的一个统一的认识。我们发现,作为对TM中心增加原子序数,NO的结合强度在很大程度上从207千焦耳摩尔(-1)降低到接近零由于逾期TM中心低d-轨道能量。在TM中心和NO分子局部自旋之间的分子间自旋耦合一般是反铁磁的,除了Sc的情况下。自旋 - 自旋耦合以这样的方式,以避免与电子占据在NO-结合复合物的反键状态相关联的能量损失来确定。 NO的吸附强度通常比CO的大,因为NO的不成对电子占据相关的接合状态。

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