首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Manipulation of Diatomic Molecules with Oriented External Electric Fields: Linear Correlations in Atomic Properties Lead to Nonlinear Molecular Responses
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Manipulation of Diatomic Molecules with Oriented External Electric Fields: Linear Correlations in Atomic Properties Lead to Nonlinear Molecular Responses

机译:用定向外电场的硅藻分子操纵:原子特性的线性相关性导致非线性分子反应

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Oriented external electric fields (OEEFs) have been shown to have great potential in being able to provide unprecedented control of chemical reactions, catalysis, and selectivity with applications ranging from H-2 storage to molecular machines. We report a theoretical study of the atomic origins of molecular changes because of OEEFs since understanding the characteristics of OEEF-induced couplings between atomic and molecular properties is an important step toward comprehensive understanding of the effects of strong external fields on the molecular structure, stability, and reactivity. We focus on the atomic and molecular (bond) properties of a set of homo- (H-2, N-2, O-2, F-2, and Cl-2) and heterodiatomic (HF, HCl, CO, and NO) molecules under intense external electric fields in the context of quantum theory of atoms in molecules (QTAIM). It is shown that the atomic properties (atomic charges, energies, and localization indices) correlate linearly with the field strengths, but molecular properties (bond length, electron density at the bond critical point, and electron delocalization index) exhibit nonlinear responses to the imposed fields. In particular, the changes in the electron density distribution alter the shapes and locations of the zero-flux surfaces, atomic volumes, atomic electron population, and localization/delocalization indices. The topography and topology of the molecular electrostatic potential undergo dramatic changes. External fields also perturb the covalent-polar-ionic characteristic of the studied chemical bonds, hallmarking the impact of electric fields on the stability and reactivity of chemical compounds. The findings are well-rationalized within the framework of the QTAIM and form a coherent conceptual understanding of these effects in prototypical diatomic molecules.
机译:导向的外部电场(OEEF)已被证明能够在能够提供前所未有的化学反应,催化和选择性与从H-2储存到分子机器的应用来提供前所未有的控制。我们报告了对分子变化原子变化的理论研究,因为OEEF,因为理解原子和分子特性之间的OEEF诱导的偶联的特征是旨在旨在旨在综合了解强大外部领域对分子结构,稳定性的影响的重要阶介。和反应性。我们专注于一组同源(H-2,N-2,O-2,F-2和Cl-2)和异部基代(HF,HCl,Co和No的原子和分子(粘合)性质)在分子中原子原子的量子背景下的强烈外部电场下的分子(qtaim)。结果表明,原子特性(原子电荷,能量和定位指标)与场强与场强进行相关,但是分子特性(粘合长度,粘结临界点的电子密度,电子临近指数的电子密度)表现出对施加的非线性响应字段。特别地,电子密度分布的变化改变了零通量表面,原子体积,原子电子群和定位/临近指数的形状和位置。分子静电潜力的地形和拓扑经历了显着的变化。外部领域还扰乱了所研究的化学键的共价极性离子特性,可以对电场对化合物的稳定性和反应性的影响。这些发现在Qtaim的框架内得到了合理的合理化,形成了对原型抗原型分子中这些效果的相干概念理解。

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