Han Sang Soo, van Duin Adri C T, Goddard William A, Lee Hyuck Mo
Department of Materials Science and Engineering, Korea Advanced Institute of Science and Technology, Kusung-dong 373-1, Yusung-gu, Daejon 305-701, Korea.
J Phys Chem A. 2005 May 26;109(20):4575-82. doi: 10.1021/jp051450m.
To make a practical molecular dynamics (MD) simulation of the large-scale reactive chemical systems of Li-H and Li-C, we have optimized parameters of the reactive force field (ReaxFF) for these systems. The parameters for this force field were obtained from fitting to the results of density functional theory (DFT) calculations on the structures and energy barriers for a number of Li-H and Li-C molecules, including Li(2), LiH, Li(2)H(2), H(3)C-Li, H(3)C-H(2)C-Li, H(2)C=C-LiH, HCCLi, H(6)C(5)-Li, and Li(2)C(2), and to the equations of state and lattice parameters for condensed phases of Li. The accuracy of the developed ReaxFF was also tested by comparison to the dissociation energies of lithium-benzene sandwich compounds and the collision behavior of lithium atoms with a C(60) buckyball.
为了对Li-H和Li-C的大规模反应化学体系进行实用的分子动力学(MD)模拟,我们针对这些体系优化了反应力场(ReaxFF)的参数。该力场的参数是通过拟合一系列Li-H和Li-C分子(包括Li(2)、LiH、Li(2)H(2)、H(3)C-Li、H(3)C-H(2)C-Li、H(2)C=C-LiH、HCCLi、H(6)C(5)-Li和Li(2)C(2))的结构和能垒的密度泛函理论(DFT)计算结果,以及Li凝聚相的状态方程和晶格参数而获得的。还通过与锂-苯夹心化合物的解离能以及锂原子与C(60)巴基球的碰撞行为进行比较,测试了所开发的ReaxFF的准确性。