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首页> 外文期刊>Chemical Physics Letters >Electronic structure and geometry optimization of nanoparticles Fe2C, FeC2, Fe3C, FeC3 and Fe2C2
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Electronic structure and geometry optimization of nanoparticles Fe2C, FeC2, Fe3C, FeC3 and Fe2C2

机译:纳米颗粒Fe2C,FeC2,Fe3C,FeC3和Fe2C2的电子结构和几何优化

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The geometry optimization of the beginning of the row of FenCm nanoparticles was carried out using the DFT based DMol(3) method. For FeC2 and Fe,C the triangular configurations are found to have the lowest binding energy. The most stable planar structures for FeC3 and Fe2C2 are favored over the three-dimensional isomers, whereas for Fe3C the pyramidal configuration appeared to be the ground state. The effective charges and total spin densities on the atoms were calculated using integral and Mulliken schemes incorporated in DVM and Hirshfeld procedure of DMol(3). The most reasonable values were obtained with the use of integral method. (c) 2005 Elsevier B.V. All rights reserved.
机译:使用基于DFT的DMol(3)方法对FenCm纳米颗粒行的起点进行几何优化。对于FeC2和Fe,C,发现三角形构型具有最低的结合能。 FeC3和Fe2C2最稳定的平面结构优于三维异构体,而Fe3C的金字塔构型似乎是基态。使用DVM中的积分和Mulliken方案和DMol(3)的Hirshfeld程序计算原子上的有效电荷和总自旋密度。使用积分方法可获得最合理的值。 (c)2005 Elsevier B.V.保留所有权利。

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