首页> 外文OA文献 >Probing the electronic and structural properties of doped aluminum clusters: MAl\u3csub\u3e12\u3c/sub\u3e\u3csup\u3e-\u3c/sup\u3e (M=Li, Cu, and Au)
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Probing the electronic and structural properties of doped aluminum clusters: MAl\u3csub\u3e12\u3c/sub\u3e\u3csup\u3e-\u3c/sup\u3e (M=Li, Cu, and Au)

机译:探讨掺杂铝簇的电子和结构特性:mal \ u3csub \ u3e12 \ u3c / sub \ u3e \ u3csup \ u3e- \ u3c / sup \ u3e(m = Li,Cu和au)

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摘要

Photoelectron spectroscopy (PES) is combined with theoretical calculations to investigate the electronic and atomic structures of three doped aluminum clusters, MAl12- (M=Li, Cu, and Au). Well-resolved PES spectra have been obtained at two detachment photon energies, 266 nm (4.661 eV) and 193 nm (6.424 eV). Basin-hopping global optimization method in combination with density-functional theory calculations has been used for the structural searches. Good agreement between the measured PES spectra and theoretical simulations helps to identify the global minimum structures. It is found that LiAl12- (C5v) can be viewed as replacing a surface Al atom by Li on an icosahedral Al13-, whereas Cu prefers the central site to form the encapsulated D3d-Cu@Al12-. For AuAl12-(C1), Au also prefers the central site, but severely distorts the Al12- cage due to its large size.
机译:将光电子能谱(PES)与理论计算相结合,以研究三个掺杂的铝团簇MAl12-(M = Li,Cu和Au)的电子和原子结构。在两个分离光子能量266 nm(4.661 eV)和193 nm(6.424 eV)下获得了分辨良好的PES光谱。盆地跳跃全局优化方法与密度泛函理论计算相结合已用于结构搜索。实测的PES光谱与理论模拟之间的良好一致性有助于识别全局最小结构。发现可以将LiAl12-(C5v)视为用二十面体Al13-上的Li代替表面Al原子,而Cu则更偏爱中心部位形成封装的D3d-Cu @ Al12-。对于AuAl12-(C1),Au也更喜欢中心位置,但由于其较大的尺寸而使Al12-笼严重变形。

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