首页> 外文期刊>The Journal of Chemical Physics >On the elimination of the electronic structure bottleneck in on the fly nonadiabatic dynamics for small to moderate sized (10-15 atom) molecules using fit diabatic representations based solely on ab initio electronic structure data: The photodissociation of phenol
【24h】

On the elimination of the electronic structure bottleneck in on the fly nonadiabatic dynamics for small to moderate sized (10-15 atom) molecules using fit diabatic representations based solely on ab initio electronic structure data: The photodissociation of phenol

机译:关于消除电子结构瓶颈的问题,仅使用从头算电子结构数据的拟合绝热表示,即可消除中小尺寸(10-15原子)分子的动态绝热动力学:苯酚的光解离

获取原文
获取原文并翻译 | 示例
           

摘要

In this work, we demonstrate that for moderate sized systems, here a system with 13 atoms, global coupled potential energy surfaces defined for several electronic states over a wide energy range and for distinct regions of nuclear coordinate space characterized by distinct electron configurations, can be constructed with precise energetics and an excellent description of non-adiabatic interactions in all regions. This is accomplished using a recently reported algorithm for constructing quasi-diabatic representations, H-d, of adiabatic electronic states coupled by conical intersections. In this work, the algorithm is used to construct an H-d to describe the photodissociation of phenol from its first and second excited electronic states. The representation treats all 33 internal degrees of freedom in an even handed manner. The ab initio adiabatic electronic structure data used to construct the fit are obtained exclusively from multireference configuration interaction with single and double excitation wave functions comprised of 88 x 10(6) configuration state functions, at geometries determined by quasi-classical trajectories. Since the algorithm uses energy gradients and derivative couplings in addition to electronic energies to construct H-d, data at only 7379 nuclear configurations are required to construct a representation, which describes all nuclear configurations involved in H atom photodissociation to produce the phenoxyl radical in its ground or first excited electronic state, with a mean unsigned energy error of 202.9 cm(-1) for electronic energies < 60 000 cm(-1). (C) 2016 AIP Publishing LLC.
机译:在这项工作中,我们证明对于中等大小的系统(这里是一个具有13个原子的系统),可以为在宽能范围内的多个电子态以及以不同电子构型为特征的核坐标空间的不同区域定义的全局耦合势能面是具有精确的能量学原理,并很好地描述了所有地区的非绝热相互作用。这是使用最近报道的算法构造的,该算法用于构造通过圆锥形相交耦合的绝热电子态的准绝热表示H-d。在这项工作中,该算法用于构建H-d,以描述苯酚从其第一和第二激发电子态的光解离。该表示法均匀地处理了所有33个内部自由度。用于构造拟合的从头开始的绝热电子结构数据是通过与单参考和双激励波函数(由88 x 10(6)组态状态函数组成)以准古典轨迹确定的几何结构从多参考组态交互中独家获得的。由于该算法除使用电子能外还使用能量梯度和微分耦合来构建Hd,因此仅需要7379个核构型的数据即可构建表示形式,该描述描述了与H原子光解相关的所有核构型,可在其基态或基态中生成苯氧基自由基。第一激发电子状态,电子能量<60 000 cm(-1)的平均无符号能量误差为202.9 cm(-1)。 (C)2016 AIP出版有限责任公司。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号