离子电导率
熔盐
分子动力学
离子键合
化学物理
电导率
材料科学
化学
电化学
离子液体
扩散
色散(光学)
离子
声子
原子间势
放松(心理学)
电阻率和电导率
无机化学
盐(化学)
物理化学
电化学窗口
热力学
热扩散率
载流子
退火(玻璃)
离子势
计算化学
作者
Xuejiao Li,Yuanyuan Wang,Yuanyuan Jiang,Yu Gong
标识
DOI:10.1021/acs.jpcb.5c05326
摘要
(FBeNd) molten salt, a key constituent salt in electrochemical pyroprocessing for the molten salt reactor. The increase in ionic conductivity with Nd concentration is explained by multilevel structural analyses encompassing phonon modes, ionic pair structures, network architectures, and electronic characteristics. Phonon dispersion analysis demonstrates that high- and low-frequency vibrational modes are governed by Be and Nd ions, respectively. Detailed structural analyses confirm that enhanced Nd diffusivity correlates with improved Nd-Nd interactions manifested through shortened Nd-Nd distances, distorted Nd-F-Nd angles, emergent edge/face-sharing clusters, and intensified electronic polarization. Conversely, Be-F tetrahedra retain structural integrity with increasing Nd concentrations, and network fragmentation accelerates Be and F diffusion. The dual enhancement effect of ionic self-diffusion coefficients and charge carrier concentration synergistically elevates the bulk ionic conductivity of molten FBeNd. Overall, a composition-structure-property framework spanning macroscale conductivity to atomistic features is established, offering foundational insights for the predictive modeling of fission product accumulation effects and the rational design of separation protocols in pyroprocessing.
科研通智能强力驱动
Strongly Powered by AbleSci AI