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Forms of adsorption and transition states of oxidation of carbon monoxide by molecular oxygen and dissociation of nitrogen monooxide, catalyzed by monovalent copper

机译:一价铜催化一氧化碳被分子氧氧化和一氧化氮离解的吸附和过渡态的形式

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With the help of the results of semiempirical (parametric method 3) and ab initio (second-order Moller-Plesset [MP2] unrestricted Hartree-Fock [UHF] 6-31G**, unrestricted density functional theory [UDFT] 6-31G** Becke's three-parameter exchange functional and the gradient-corrected functional of Lee, Yang, and Paar [B3LYP] and UDFT LANL2DZ B3LYP) quantum-chemical calculations has been studied the complexation CO and NO with molecular hydroxide of copper(I). The influence of charge defects has been simulated by the calculations of anionic, neutral, and cationic systems. It is shown that CO and NO are mainly coordinated by nonoxygen atom on an atom of copper(I) hydroxide as one- and two-center forms. These forms are suitable for appearance of prereactionary complexes of catalytic oxidation CO by molecular oxygen and decomposition NO into atoms of nitrogen and oxygen. The corresponding prereactionary complexes for systems with participation of copper(II) hydroxide and copper(III) hydroxide are not revealed. The calculations predict inhibiting impact of copper(II) and copper(III) of the observed reactions. Computed stability of complexes CO and NO with copper(I) hydroxide and activation energy of catalytic conversion of monooxides essentially depend on an excessive charge of the system. Introduction of electron-donating additives into copper(I) hydroxide promotes rise of catalytic activity of copper(I) compound. (c) 2005 Wiley Periodicals, Inc.
机译:借助半经验(参数方法3)和从头算(二阶Moller-Plesset [MP2]无限制Hartree-Fock [UHF] 6-31G **)的结果,无限制密度泛函理论[UDFT] 6-31G * *已经研究了Becke的三参数交换函数和Lee,Yang和Paar [B3LYP]和UDFT LANL2DZ B3LYP)的梯度校正函数的量子化学计算,研究了CO和NO与铜(I)的分子氢氧化物的络合作用。电荷缺陷的影响已通过阴离子,中性和阳离子体系的计算进行了模拟。结果表明,CO和NO主要由非氧原子在氢氧化铜(I)原子上以一中心和二中心形式配位。这些形式适合于通过分子氧出现催化氧化CO的预反应络合物,以及将NO分解为氮和氧原子。没有揭示具有氢氧化铜(II)和氢氧化铜(III)的体系的相应的反应前配合物。该计算预测观察到的反应对铜(II)和铜(III)的抑制作用。 CO和NO与氢氧化铜(I)的配合物的计算稳定性和一氧化物催化转化的活化能基本上取决于系统的过量电荷。将供电子性添加剂引入氢氧化铜(I)促进了铜(I)化合物的催化活性的提高。 (c)2005年Wiley Periodicals,Inc.

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