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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Transformation between Hexagonal Prism and Antiprism of the Singly and Doubly Cr-Doped Ge-12 Clusters
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Transformation between Hexagonal Prism and Antiprism of the Singly and Doubly Cr-Doped Ge-12 Clusters

机译:单六角棱镜与单倍掺杂GE-12集群之间的六角形棱镜与抗抗争的转变

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Structural transformation is a unique characteristic of atomic clusters, but it turns out very different from cluster to cluster. This theoretical study proves that the isomeric transformation between hexagonal prism and hexagonal antiprism is found for the doubly doped Cr2Ge12 cluster but not for singly doped CrGe12 cluster. We confirm that the ground state of CrGe12 is the distorted hexagonal prism C-2h at the B-3(g) triplet state instead of various shapes predicted in the previous studies. Upon comparison between the estimation at the B3P86/6-311 +G(d) level of theory and the detachment energies measured by photoelectron spectroscopy, hexagonal antiprismatic shape is identified as the most stable isomer of the Cr2Ge12 cluster and it is easy to transform to the hexagonal prism-a less stable isomer by the rotation of the hexagonal rings. That is the first evidence for the structural transformation between a hexagonal prism and an antiprism of the germanium clusters, referring to the ability of Ge-based clusters in the formation of tubular geometry by doping Cr atoms. All the low-energy isomers of both Cr-doped germanium clusters have high magnetic moments. Interestingly, there is a tuning in magnetic properties of Cr2Ge12 from the ferromagnetism of the lowest-lying hexagonal antiprism to the ferrimagnetism of the higher-energy hexagonal prism. The stronger Cr-Cr bond and stronger interaction between the Cr, moiety and the antiprism cage are accounted for by the higher stability of the hexagonal antiprismatic isomer.
机译:结构转变是原子集群的独特特征,但它与集群变得非常不同。该理论研究证明,六边形棱镜和六边形反转之间的异构变换被发现为双掺杂CR2GE12簇,但不是单掺杂的曲奇12簇。我们确认Crge12的地位是B-3(G)三重态的扭曲六边形棱镜C-2H,而不是先前研究中预测的各种形状。在比较B3P86 / 6-311 + G(d)理论水平和通过光电子光谱测量的分离能量之间的估计之间,六边形抗翻性形状被鉴定为CR2GE12簇的最稳定的异构体,并且易于转化为六边形棱镜 - 通过六边形环的旋转而稳定的异构体。这是六角形棱镜与锗簇之间的结构转变的第一个证据,通过掺杂Cr原子来掺杂基于Ge基团的簇的能力。所有Cr掺杂的锗簇的所有低能量异构体都具有高磁矩。有趣的是,来自最低六边形反转的铁磁性的Cr2ge12的磁性特性与较高能量六边形棱镜的铁物质磁性的磁性。通过六边形抗脂异构体的稳定性稳定,Cr,部分和抗抗枢纽之间的较强的Cr-Cr键和较强的相互作用。

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