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四氧化钨纳米团簇 W4O(n)(-/0) (n = 10-13):结构演变与化学成键。

Tetratungsten oxide clusters W4O(n)(-/0) (n = 10-13): structural evolution and chemical bonding.

机构信息

Department of Chemistry, Fuzhou University, Fuzhou, Fujian 350108, People's Republic of China.

出版信息

J Phys Chem A. 2010 Feb 4;114(4):1964-72. doi: 10.1021/jp909676s.

DOI:10.1021/jp909676s
PMID:20043690
Abstract

Density functional theory (DFT) calculations are carried out to investigate the electronic and structural properties of a series of tetratungsten oxide clusters, W(4)O(n)(-/0) (n = 10-13). Generalized Koopmans' theorem is applied to predict the vertical detachment energies and simulate the photoelectron spectra (PES). A large energy gap (approximately 2.9 eV) is observed for the stoichiometric W(4)O(12) cluster, which reaches the bulk value. The calculations suggest that W(4)O(12)(-/0) have the planar eight-membered ring structures, in which each tungsten atom is tetrahedrally coordinated with two bridging O atoms and two terminal O atoms. W(4)O(10)(-/0) and W(4)O(11)(-) can be viewed as removing two and one terminal O atoms from W(4)O(12)(-/0), respectively. The W(4)O(11) neutral is an interesting species, which possesses the pentabridged structure. We show that W(4)O(11)(-) contains a localized W(3+) site, which can readily react with O(2) to form the W(4)O(13)(-) cluster, whereas the corresponding neutral W(4)O(13) can be viewed as replacing a terminal oxygen in W(4)O(12) by a peroxo O(2) unit. Molecular orbital analyses are performed to analyze the chemical bonding in the tetratungsten oxide clusters and to elucidate their electronic and structural evolution.

摘要

密度泛函理论(DFT)计算用于研究一系列四氧化钨团簇的电子和结构性质,W(4)O(n)(-/0)(n = 10-13)。广义库珀定理被应用于预测垂直离解能并模拟光电子能谱(PES)。观察到具有大块值的化学计量比 W(4)O(12)团簇的大能隙(约 2.9 eV)。计算表明,W(4)O(12)(-/0)具有平面八元环结构,其中每个钨原子都与两个桥接 O 原子和两个端基 O 原子四配位。W(4)O(10)(-/0)和 W(4)O(11)(-)可以分别被视为从 W(4)O(12)(-/0)中去除两个和一个端基 O 原子。W(4)O(11)中性是一种有趣的物种,具有五桥接结构。我们表明 W(4)O(11)(-)包含一个局域化的 W(3+)位,它可以与 O(2)迅速反应形成 W(4)O(13)(-)团簇,而相应的中性 W(4)O(13)可以被视为用过氧 O(2)单元替代 W(4)O(12)中的一个端氧。进行分子轨道分析以分析四氧化钨团簇中的化学键合,并阐明它们的电子和结构演化。

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