首页> 外文期刊>The Journal of Chemical Physics >Towards a quantum chemical protocol for the prediction of rovibrational spectroscopic data for transition metal molecules: Exploration of CuCN, CuOH, and CuCCH
【24h】

Towards a quantum chemical protocol for the prediction of rovibrational spectroscopic data for transition metal molecules: Exploration of CuCN, CuOH, and CuCCH

机译:朝着用于预测过渡金属分子的振动光谱数据的量子化学方案:CUCN,CUOH和CUCCH的探索

获取原文
获取原文并翻译 | 示例
           

摘要

High accuracy electronic structure computations for small transition metal-containing molecules have been a long term challenge. Due to coupling between electronic and nuclear wave functions, even experimental/theoretical identification of the ground electronic state requires tremendous efforts. Quartic force fields (QFFs) are effective ab initio tools for obtaining reliable anharmonic spectroscopic properties. However, the method that employs complete basis set limit extrapolation ("C"), consideration of core electron correlation ("cC"), and inclusion of scalar relativity ("R") to produce the energy points on the QFF, the composite CcCR methodology, has not yet been utilized to study inorganic spectroscopy. This work takes the CcCR methodology and adapts it to test whether such an approach is conducive for the closed-shell, copper-containing molecules CuCN, CuOH, and CuCCH. Gas phase rovibrational data are provided for all three species in their ground electronic states. Equilibrium geometries and many higher-order rovibrational properties show good agreement with earlier studies. However, there are notable differences, especially in computation of fundamental vibrational frequencies. Even with further additive corrections for the inner core electron correlation and coupled cluster with full single, double, and triple substitutions (CCSDT), the differences are still larger than expected indicating that more work should follow for predicting rovibrational properties of transition metal molecules. Published by AIP Publishing.
机译:高精度的电子结构计算用于小过渡金属分子的计算是长期挑战。由于电子和核波功能之间的耦合,即使是实验/理论识别的地面电子国家需要巨大的努力。四分之一的力场(QFF)是用于获得可靠的无谐波光谱性能的有效AB Initio工具。但是,采用完整基础设定的方法限制外推(“C”),考虑核心电子相关(“CC”),并包含标量相对性(“R”)以产生QFF上的能量点,复合CCCR方法论尚未用于研究无机光谱。这项工作采用CCCR方法,并适应其以测试这种方法是否有利于封闭壳,含铜分子CUCN,CUOH和CUCCH。为其地面电子国家中的所有三种物种提供气相振动数据。均衡几何形状和许多高阶罗维奇属性显示出与早期研究的良好一致。然而,存在显着的差异,特别是在基本振动频率计算中。甚至具有完全单一的内核电子相关和耦合簇的进一步添加剂校正,差异仍然仍然大于预期,表明需要遵循更多的工作以预测过渡金属分子的振动性能。通过AIP发布发布。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 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