首页> 外文期刊>Journal of Cluster Science >A Density Functional Investigation on C2Aun+ (n = 1, 3, 5) and C2Aun (n = 2, 4, 6): from Gold Terminals, Gold Bridges, to Gold Triangles
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A Density Functional Investigation on C2Aun+ (n = 1, 3, 5) and C2Aun (n = 2, 4, 6): from Gold Terminals, Gold Bridges, to Gold Triangles

机译:C 2 Aun + (n = 1、3、5)和C 2 Aun(n = 2、4、4的密度泛函研究6):从金端子,金桥到金三角

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摘要

A systematic density functional theory investigation on C2Au n + (n = 1,3,5) and C2Au n (n = 2,4,6) indicates that gold atoms serve as terminals (–Au) in the chain-like Cs C2Au+ (C=C–Au+) and D∞h C2Au2 (Au–C≡C–Au) and as bridges (–Au–) in the side-on coordinated C2v C2Au3 + ([Au–C≡C–Au]Au+) and Cs C2HAu2 +([H–C≡C–Au]Au+). However, when the number of gold atoms reaches four, they form stable gold triangles (–Au3) in the head-on coordinated C2v C2Au4 (Au–C≡C–Au3) and the side-on coordinated C2v C2Au5 + ([Au–C≡C–Au]Au3 +). Similar –Au3 triangular units exist in the head-on coordinated C2v C2HAu3 (H–C≡C–Au3) and D2d C2Au6 (Au3–C≡C–Au3). The existence of stable –Au3 triangular units in small dicarbon aurides is significant and intriguing. The high stability of Au3 triangles originates from the fact that an equilateral D3h Au3 + cation possesses a completely delocalized three-center-two-electron (3c–2e) σ bond and therefore is σ-aromatic in nature. The extension from H/Au analogy to H/Au3 analogy established in this work may have important implications in designing new gold-containing catalysts and nano-materials.
机译:关于C 2 Au n + (n = 1,3,5)和C 2 Au n (n = 2,4,6)表示金原子充当链状C s C 2的末端(–Au) Au + (C = C–Au + )和D ∞h C 2 Au < sub> 2 (Au–C≡C–Au)并作为侧向协调C 2v C 2 Au < sub> 3 + ([Au–C≡C–Au] Au + )和C s C 2 HAu 2 + ([H–C≡C–Au] Au + )。但是,当金原子数达到四个时,它们在正面配位的C 2v C 2 中形成稳定的金三角形(–Au 3 )。 sub> Au 4 (Au–C≡C–Au 3 )和侧面协调的C 2v C 2 Au 5 + ([Au–C≡C–Au] Au 3 + )。在正面协调的C 2v C 2 HAu 3 中存在类似的–Au 3 三角形单元(H– C≡C–Au 3 )和D 2d C 2 Au 6 (Au 3 –C≡C–Au 3 )。在小的二氧化碳中,稳定的–Au 3 三角单元的存在是有意义的。 Au 3 三角形的高稳定性源于以下事实:等边的D 3h Au 3 + 阳离子具有完全离域的三中心二电子(3c-2e)σ键,因此本质上是σ芳香族。这项工作中建立的从H / Au类比到H / Au 3 类比的扩展可能对设计新的含金催化剂和纳米材料具有重要意义。

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