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铜钴纳米颗粒中的化学有序性:使用密度泛函理论计算的拓扑建模

Chemical Orderings in CuCo Nanoparticles: Topological Modeling Using DFT Calculations.

作者信息

Neyman Konstantin M, Alemany Pere

机构信息

ICREA (Institució Catalana de Recerca i Estudis Avançats), Pg. Lluís Companys 23, 08010 Barcelona, Spain.

Departament de Ciència de Materials i Química Física and Institut de Quimica Teòrica i Computacional (IQTCUB), Universitat de Barcelona, c/Martí i Franquès 1, 08028 Barcelona, Spain.

出版信息

Nanomaterials (Basel). 2024 Jul 24;14(15):1242. doi: 10.3390/nano14151242.

Abstract

The orderings of atoms in bimetallic 1.6-2.1 nm-large CuCo nanoparticles, important as catalytic and magnetic materials, were studied using a combination of DFT calculations with a topological approach. The structure and magnetism of CuCo, CuCo, CuCo, and CuCo nanoparticles; their resistance to disintegrating into separate Cu and Co species; as well as the exposed surface sites, were quantified and analyzed, showing a clear preference for Cu atoms to occupy surface positions while the Co atoms tended to form a compact cluster in the interior of the nanoparticles. The surface segregation of Co atoms that are encapsulated by less-active Cu atoms, induced by the adsorption of CO molecules, was already enabled at a low coverage of adsorbed CO, providing the energy required to displace the entire compact Co species inside the Cu matrices due to a notable adsorption preference of CO for the Co sites over the Cu ones. The calculated adsorption energies and vibrational frequencies of adsorbed CO should be helpful indicators for experimentally monitoring the nature of the surface sites of CuCo nanoparticles, especially in the case of active Co surface sites emerging in the presence of CO.

摘要

利用密度泛函理论(DFT)计算与拓扑方法相结合的方式,研究了作为催化和磁性材料具有重要意义的1.6 - 2.1纳米双金属铜钴纳米颗粒中原子的排列情况。对CuCo、CuCo、CuCo和CuCo纳米颗粒的结构、磁性、它们抵抗分解成单独的铜和钴物种的能力以及暴露的表面位点进行了量化和分析,结果表明铜原子明显倾向于占据表面位置,而钴原子则倾向于在纳米颗粒内部形成紧密的簇。由CO分子吸附诱导的、被活性较低的铜原子包裹的钴原子的表面偏析,在低覆盖度的吸附CO时就已发生,这是由于CO对钴位点的吸附偏好明显高于铜位点,从而提供了将整个紧密的钴物种在铜基体内部进行置换所需的能量。计算得到的吸附CO的吸附能和振动频率,应该是实验监测铜钴纳米颗粒表面位点性质的有用指标,特别是在有CO存在时出现活性钴表面位点的情况下。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10fb/11314349/6cfee99c8f19/nanomaterials-14-01242-g001.jpg

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