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首页> 外文期刊>International Journal of Quantum Chemistry >Does the gradient-regulated connection improve the description of correlated metal bond properties?
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Does the gradient-regulated connection improve the description of correlated metal bond properties?

机译:梯度调节的连接是否改善了相关金属键性的描述?

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摘要

Gradient-regulated connection (GRAC) is a generalized gradient approximation exchange density functional designed by combining the revPBE and PW91 exchange functionals to impose their behaviors in the slowly- and fast-varying density regions, respectively. Such a construction allows one single density functional to accurately estimate both covalent and weak interactions occurring in main-group-based molecular systems. For the first time, the assessment of the performance of the GRAC exchange functional is extended to the modeling of various metal bond energy and structure properties. This assessment shows that when GRAC is coupled with the Perdew, Burke, Ernzerhof (PBE) correlation, the resulting exchange-correlation density functional is an excellent alternative to global hybrids to model bond dissociation energy, atomic electronic excitation energy, and bond length structure properties of single-reference metal bonds. It also shows that coupling with the Tognetti, Cortona, Adamo (TCA) correlation constitutes a robust approach to tackle energy bond properties of organometallic complexes with multi-reference character.
机译:梯度调节的连接(GRAC)是通过组合RevPBE和PW91交换功能分别在缓慢和快速变化的密度区域中施加其行为来设计的广义梯度近似交换密度函数。这种结构允许一种单一密度函数来精确地估计基于基于组的分子系统中的共价和弱相互作用。首次,对GRAC交换功能的性能的评估扩展到各种金属键能和结构性能的建模。该评估表明,当GRAC与百分点,Burke,Ernzerhof(PBE)相关性时,所得到的交换相关性密度函数是全局杂交种的绝佳替代方案,以模拟粘合解离能,原子电子激发能量和键合长度结构性能单引用金属键。它还表明,与Tognetti,Cortona,ADAMO(TCA)相关的耦合构成了具有多参考特征的有机金属复合物的能量键性特性的鲁棒方法。

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