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首页> 外文期刊>Computational Materials Science >Mapping ground-state properties of silicon carbide molecular clusters using quantum mechanical calculations: Si_mC_n and Si_mC_n (m, n≤64)
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Mapping ground-state properties of silicon carbide molecular clusters using quantum mechanical calculations: Si_mC_n and Si_mC_n (m, n≤64)

机译:使用量子力学计算Si_mC_n和Si_mC_n(m,n≤64)绘制碳化硅分子簇的基态性质映射

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摘要

Ground-state structures, energies and vibrations for stable neutral and anion SimCn isomers (m, n≤6 4) were modeled using DFT and MP2 methods. Carbon-rich cluster molecules tend to form linear carbon sub-molecules or separate C2 groups as part of larger 3-dimensional structures. All silicon-rich clusters are ground-state singlet states. Linear chain clusters containing an even number of atoms are groundstate triplets. In absence of large structural differences between neutral clusters and their anions the adiabatic electron affinity (AEA) and the vertical detachment energy (VDE) are approximately equal. For clusters having two or more isomers with energies close to global minimum, the anions adopt structures similar to one of the nearly degenerate isomers. The VDE is significantly larger than AEA for clusters having an even number of carbon atoms. This difference generally increases with increasing number of silicon atoms, due to differences in bonding between the neutral molecule and its anion. Mapping cluster stability shows that adding Si or C atoms increases the binding energy of the most stable isomers for all clusters with the exception of SiC3 and Si2C3, which are locally stable. A parameterized method is presented to quickly predict the stability of other SimCn cluster structures.
机译:使用DFT和MP2方法对稳定的中性和阴离子SimCn异构体(m,n≤64)的基态结构,能量和振动进行了建模。富碳簇分子倾向于形成线性碳亚分子或单独的C2基团,作为较大3维结构的一部分。所有富含硅的簇都是基态单重态。包含偶数原子的线性链簇是基态三重态。在中性簇及其阴离子之间没有大的结构差异的情况下,绝热电子亲和力(AEA)和垂直脱离能(VDE)大致相等。对于具有两个或多个异构体且能量接近全局最小值的簇,阴离子采用的结构类似于几乎简并的异构体之一。对于具有偶数碳原子的簇,VDE明显大于AEA。由于中性分子与其阴离子之间键合的差异,这种差异通常随着硅原子数量的增加而增加。映射簇的稳定性表明,添加的Si或C原子会增加所有簇中最稳定的异构体的结合能,但SiC3和Si2C3局部稳定。提出了一种参数化方法来快速预测其他SimCn簇结构的稳定性。

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