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Generalized relativistic effective core potentials for actinides

机译:act系元素的广义相对论有效核心势

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Actinide compounds are very intriguing objects for the quantum chemistry because, on the one hand, these compounds are of great scientific and technological interest and, on the other hand, quantitative first principle based modeling of their electronic structure is extremely difficult because of strong relativistic effects and complicated electron correlation pattern. The efficiency of high-level all-electron relativistic methods in applications to complex actinide systems of practical interest is questionable and more economical but sufficiently accurate approaches to the studies of such systems are preferable. Recently, generalized relativistic effective core potentials (GRECPs) have been generated for actinides to perform accurate calculations of electronic structure and properties of their compounds with moderate computational cost. The accuracy of different GRECP versions is analyzed in atomic calculations and their applications to molecular and cluster calculations are reviewed. The results are compared with available experimental data and other theoretical studies. (c) 2015 Wiley Periodicals, Inc.
机译:in系化合物是量子化学中非常引人入胜的对象,因为一方面,这些化合物具有重大的科学技术意义;另一方面,由于强烈的相对论效应,基于定量第一原理的电子结构建模非常困难和复杂的电子相关模式。高水平全电子相对论方法在实际感兴趣的复杂act系元素体系中的应用效率值得怀疑,更经济,更准确的方法对于此类体系的研究是可取的。最近,已产生act系元素的广义相对论有效核心电势(GRECP),以适度的计算成本对化合物的电子结构和性质进行准确的计算。在原子计算中分析了不同GRECP版本的准确性,并审查了它们在分子和簇计算中的应用。将结果与可用的实验数据和其他理论研究进行比较。 (c)2015年威利期刊有限公司

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