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Unraveling Special Structures and Properties of Gold-Covered Gold-Core Cage on Au33-42 Nanoparticles

机译:在Au33-42纳米颗粒上揭示金包金核笼的特殊结构和性能

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摘要

New low-energy atomic structures and properties of medium-size gold nanoparticles (Au33-42) are studied, where the atomic positions of gold atoms are obtained on the basis of the generic formulation of shell and core concept. Hollow cage, tube-like, double-layered flat, fcc-like, and close-packed configurations are predicted. Relativistic density functional theory optimization indicated that low-symmetry stuffed configurations are all lower in energy than the others. Further analysis of the optimized structures of Au33-42 nanoparticles shows that these gold cores are all four-atom tetrahedral structures and similar to each other; only the number and positions of gold atoms at the surface of gold core are different. Compared with structure and electronic properties, Au33-42 nanoparticles have different structure stabilities and chemical activities. But they are all hybridizations of sp and d electrons. The obtained information forms the basis for future chemisorption studies to unravel the catalytic effects of gold nanoparticles.
机译:研究了中型金纳米粒子(Au33-42)的新的低能原子结构和性质,其中金原子的原子位置是基于壳和核概念的通用公式得出的。可以预测空心笼状,管状,双层扁平状,FCC状和密排结构。相对论密度泛函理论优化表明,低对称填充结构的能量均低于其他结构。对Au33-42纳米颗粒的优化结构的进一步分析表明,这些金核都是四原子四面体结构,彼此相似;只有金原子在金核表面的数量和位置不同。与结构和电子性质相比,Au33-42纳米粒子具有不同的结构稳定性和化学活性。但是它们都是sp和d电子的杂交。获得的信息构成了未来化学吸附研究的基础,以阐明金纳米颗粒的催化作用。

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