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首页> 外文期刊>Journal of theoretical & computational chemistry >BLOCK-LOCALIZED WAVEFUNCTION ENERGY DECOMPOSITION (BLW-ED) ANALYSIS OF σ/π INTERACTIONS IN METAL-CARBONYL BONDING
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BLOCK-LOCALIZED WAVEFUNCTION ENERGY DECOMPOSITION (BLW-ED) ANALYSIS OF σ/π INTERACTIONS IN METAL-CARBONYL BONDING

机译:金属-羰基键合中σ/π相互作用的块位波能能量分解(BLW-ED)分析

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摘要

The bonding features in metal-carbonyls including neutral MCO (M = Ni, Pd, Pt) and MCO+ (M+ = Cu+, Ag+, Au+) complexes have been elucidated at the DFT level with relativistic compact effective potentials for transition metals and 6-311+G(d) basis sets for C and O by the block-localized wavefunction (BLW) method. The BLW method can decompose the intermolecular interactions in terms of Heitler–London, polarization, and charge transfer energy contributions. Since the metal–CO bonding involves two synergic interactions, namely the σ-dative bond from the carbon lone electron pair to an empty dσ orbital on the metal, and the π back-donation from filled dπ orbitals to the empty 2π* orbital on CO, the present BLW-ED analyses quantitatively demonstrated that in neutral MCO complexes the π-bonding dominates over the σ-bonding, whereas in cationic MCO+ complexes, the σ-bonding plays a major role. But in both neutral and cationic species, the CO polarization induced by the metals enhances the C–O bond and increases the C–O vibrational frequencies, while the π back-donation tends to weaken the C–O bond and decrease the C–O vibrational frequencies. For neutral complexes, the latter is more prominent than the former, and consequently, there is a red-shifting of the C–O vibrational frequencies. In contrast, the π back-donation is insignificant in MCO+ cations, and the C–O eventually vibrates at higher frequencies than the free CO frequency.
机译:已经在DFT级别阐明了中性MCO(M = Ni,Pd,Pt)和MCO +(M + = Cu +,Ag +,Au +)配合物的羰基金属的键合特征,并具有相对论的紧凑有效过渡金属和6-311的有效电势通过块局部波函数(BLW)方法获得C和O的+ G(d)基集。 BLW方法可以根据Heitler-London,极化和电荷转移能量的贡献来分解分子间的相互作用。由于金属-CO键涉及两个协同相互作用,即从碳单电子对到金属上一个空的dσ轨道的σ-键,以及从填充的dπ轨道到CO上的空2π*轨道的π返配。目前的BLW-ED分析定量表明,在中性MCO络合物中,π键占主导地位,而在σM键+络合物中,σ键起主要作用。但是在中性和阳离子物种中,金属诱导的CO极化都会增强C–O键并增加C–O的振动频率,而π的反向捐赠会削弱C–O键并降低C–O振动频率。对于中性复合物,后者比前者更为突出,因此,C–O振动频率会发生红移。相比之下,在MCO +阳离子中π反向捐赠微不足道,并且C–O最终以高于自由CO频率的频率振动。

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