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Reveal the fast and charge-insensitive lattice diffusion of silver in cubic silicon carbide via first-principles calculations

机译:通过第一原理计算揭示白硅碳化银中银的快速和电荷不敏感的晶格扩散

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The lattice diffusion of silver with various charge states in cubic silicon carbide has been investigated by means of high-fidelity spin-polarized density functional theory calculations. The migration energy barrier of the Ag interstitial diffusion is 1.09 eV and 1.11 eV for neutral and q = +1e charge state, respectively, close to the activation energy of Ag diffusion measured in the German HTR fuel program. A general trend is that the migration energy barrier reduces with respect to the increase of charge on Ag, which is much less than the increment in the oxidation energy, suggesting that the lattice diffusion of silver prefers constant neutral state without redox in transition state. Our results indicate a scenario that once Ag is deposited to interstitials via the kickout mechanism, it will highly likely perform lattice diffusion across the SiC layer leading to fast release of Ag in Tristructural-Isotropic fuel induced by irradiation.
机译:通过高保真自旋极化密度泛函理论计算,研究了在立方碳化硅中具有各种电荷状态的银的晶格扩散。 AG间隙扩散的迁移能量屏障分别为1.09eV和1.11 EV用于中性和Q = + 1E电荷状态,接近德国HTR燃料计划中测量的AG扩散的激活能量。 一般趋势是迁移能垒相对于Ag的电荷增加减少,这远小于氧化能量的增量,表明银的晶格在过渡状态下没有氧化还原的恒定中性状态。 我们的结果表明,一旦AG通过挖掘机制沉积AG的情况,它就高度可能在SIC层上进行晶格扩散,导致通过照射引起的诱导的Tristructuct Intopic燃料中的AG快速释放Ag。

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