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单锂和双锂掺杂硅团簇:几何和电子结构以及电离能。

Singly and doubly lithium doped silicon clusters: geometrical and electronic structures and ionization energies.

机构信息

Department of Chemistry, Katholieke Universiteit Leuven, B-3001 Leuven, Belgium.

出版信息

J Chem Phys. 2012 Jan 14;136(2):024301. doi: 10.1063/1.3672164.

Abstract

The geometric structures of neutral and cationic Si(n)Li(m)(0/+) clusters with n = 2-11 and m = 1, 2 are investigated using combined experimental and computational methods. The adiabatic ionization energy and vertical ionization energy (VIE) of Si(n)Li(m) clusters are determined using quantum chemical methods (B3LYP/6-311+G(d), G3B3, and CCSD(T)/aug-cc-pVxZ with x = D,T), whereas experimental values are derived from threshold photoionization experiments in the 4.68-6.24 eV range. Among the investigated cluster sizes, only Si(6)Li(2), Si(7)Li, Si(10)Li, and Si(11)Li have ionization thresholds below 6.24 eV and could be measured accurately. The ionization threshold and VIE obtained from the experimental photoionization efficiency curves agree well with the computed values. The growth mechanism of the lithium doped silicon clusters follows some simple rules: (1) neutral singly doped Si(n)Li clusters favor the Li atom addition on an edge or a face of the structure of the corresponding Si(n)(-) anion, while the cationic Si(n)Li(+) binds with one Si atom of the bare Si(n) cluster or adds on one of its edges, and (2) for doubly doped Si(n)Li(2)(0/+) clusters, the neutrals have the shape of the Si(n+1) counterparts with an additional Li atom added on an edge or a face of it, while the cations have both Li atoms added on edges or faces of the Si(n)(-) clusters.

摘要

采用实验和计算相结合的方法研究了中性和阳离子 Si(n)Li(m)(0/+)团簇(n=2-11,m=1,2)的几何结构。使用量子化学方法(B3LYP/6-311+G(d)、G3B3 和 CCSD(T)/aug-cc-pVxZ,其中 x = D,T)确定了 Si(n)Li(m)团簇的绝热电离能和垂直电离能(VIE),而实验值则来自 4.68-6.24 eV 范围内的阈值光致电离实验。在所研究的团簇尺寸中,只有 Si(6)Li(2)、Si(7)Li、Si(10)Li 和 Si(11)Li 的电离阈值低于 6.24 eV,并且可以准确测量。从实验光致电离效率曲线获得的电离阈值和 VIE 与计算值吻合较好。锂离子掺杂硅团簇的生长机制遵循一些简单的规则:(1)中性单掺杂 Si(n)Li 团簇倾向于在相应 Si(n)(-)阴离子的结构的边缘或面上添加 Li 原子,而阳离子 Si(n)Li(+)与裸露 Si(n)团簇的一个 Si 原子结合或添加到其边缘之一,以及(2)对于双掺杂 Si(n)Li(2)(0/+)团簇,中性体具有 Si(n+1)对应体的形状,外加一个 Li 原子添加到它的边缘或面上,而阳离子则具有两个 Li 原子添加到 Si(n)(-)团簇的边缘或面上。

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