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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >A Photoelectron Spectroscopic and Computational Study of Sodium Auride Clusters,Na_nAu_n~-(n = 1-3)
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A Photoelectron Spectroscopic and Computational Study of Sodium Auride Clusters,Na_nAu_n~-(n = 1-3)

机译:Na_nAu_n〜-(n = 1-3)的氮化钠团簇的光电子能谱和计算研究

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Negatively charged sodium auride clusters,Na_nAu_n~-(n = 1-3),have been investigated experimentally using photoelectron spectroscopy and ab initio calculations.Well-resolved electronic transitions were observed in the photoelectron spectra of Na_nAu_n~-(re = 1-3)at several photon energies.Very large band gaps were observed in the photoelectron spectra of the anion clusters,indicating that the corresponding neutral clusters are stable closed-shell species.Calculations show that the global minimum of Na2Au2~-is a quasi-linear species with C_s symmetry.A planar isomer of D_(2h)symmetry is found to be 0.137 eV higher in energy.The two lowest energy isomers of Na3Au3~-consist of three-dimensional structures of C_s symmetry.The global minimum of Na3Au3~-has a bent-flake structure lying 0.077 eV below a more compact structure.The global minima of the sodium auride clusters are confirmed by the good agreement between the calculated electron detachment energies of the anions and the measured photoelectron spectra.The global minima of neutral Na2Au2 and Na3Au3 are found to possess higher symmetries with a planar four-membered ring(D_(2h)and a six-membered ring(D_(3h))structure,respectively.The chemical bonding in the sodium auride clusters is found to be highly ionic with Au acting as the electron acceptor.
机译:使用光电子能谱和从头算的方法对带负电的硫化钠簇Na_nAu_n〜-(n = 1-3)进行了实验研究,在Na_nAu_n〜-(re = 1-3)的光电子光谱中观察到了分辨良好的电子跃迁阴离子团簇的光电子光谱中观察到非常大的带隙,表明相应的中性团簇是稳定的闭壳物种。计算表明Na2Au2〜-的全局最小值是准线性物种具有C_s对称性的D_(2h)对称平面异构体的能量高0.137 eV.Na3Au3〜的两个最低能量异构体由C_s对称的三维结构组成.Na3Au3〜-的全局最小值弯曲的片状结构比更紧密的结构低0.077 eV。通过计算得出的阴离子的电子离解能与测得的ph值之间的良好一致性,证实了硫化钠簇的整体最小值耳电子谱。发现中性Na2Au2和Na3Au3的全局最小值分别具有较高的对称性,分别具有平面四元环(D_(2h)和六元环(D_(3h))结构。发现Auide簇是高度离子化的,以Au作为电子受体。

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