首页> 外文OA文献 >Dissociation of ground and nσ* states of CF3Cl using multireference configuration interaction with singles and doubles and with multireference average quadratic coupled cluster extensivity corrections
【2h】

Dissociation of ground and nσ* states of CF3Cl using multireference configuration interaction with singles and doubles and with multireference average quadratic coupled cluster extensivity corrections

机译:CF3Cl的基态和nσ*状态通过单键和双键多参考配置相互作用以及多参考平均二次耦合簇扩展性校正进行解离

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Extended complete active space self-consistent field (CASSCF), multireference configuration interaction with singles and doubles (MR-CISD), and multireference average quadratic coupled cluster (MR-AQCC) calculations have been performed on the ground (S0) and first excited (nσ*,S1) states of the CF3Cl molecule. Full geometry optimizations have been carried out for S0 as well as “relaxed” potential energy calculations for both states, along the C–Cl bond distance. Vertical excitation energies (ΔEvertical), dissociation energies (ΔEdiss), dissociation enthalpies (ΔHdiss), and the oscillator strength (f) have also been computed. Basis set effects, basis set superposition error (BSSE), and spin-orbit and size-extensivity corrections have also been considered. The general agreement between theoretical and available experimental results is very good. The best results for the equilibrium geometrical parameters of S0 (at MR-AQCC/aug-cc-pVTZ+d level) are 1.762 and 1.323 Å, for the C–Cl and C–F bond distances, respectively, while the corresponding experimental values are 1.751 and 1.328 Å. The ∠ClCF and ∠FCF bond angles are in excellent agreement with the corresponding experimental values (110.3° and 108.6°). The best calculated values for ΔEvertical, ΔHdiss, and f are 7.63 eV [at the MR-AQCC/aug-cc-pV(T+d)Z level], 3.59 eV[MR-AQCC/aug-cc-pV(T+d)Z level+spin-orbit and BSSE corrections], and 2.74×10−3 (MR-CISD/cc-pVTZ), in comparison with the corresponding experimental values of 7.7±0.1 eV, 3.68 eV, and 3.12×10−3±2.50×10−4. The results concerning the potential energy curves for S0 and S1 show a tendency toward the nonoccurrence of crossing between these two states (in the intermediate region along the C–Cl coordinate), as the basis set size increases. Such tendency is accompanied by a decreasing well depth for the S1 state. Dynamic electronic correlation (especially at the MR-AQCC level) is also an important factor toward an absence of crossing along the C–Cl coordinate. Further investigations of a possible crossing using gradient driven techniques (at CASSCF and MR-CISD levels) seem to confirm its absence.
机译:扩展的完整活动空间自洽字段(CASSCF),与单打和双打的多参考配置交互(MR-CISD)以及在地面(S0)上执行的多参考平均二次耦合聚类(MR-AQCC)计算和首次激发( CF3Cl分子的nσ*,S1)状态。沿着C–Cl键的距离对S0进行了完整的几何优化,并对两种状态进行了“松弛”势能计算。还计算了垂直激发能(ΔEvertical),解离能(ΔEdiss),解离焓(ΔHdiss)和振荡器强度(f)。还考虑了基础集效应,基础集叠加误差(BSSE)以及自旋轨道和尺寸扩展性校正。理论和可用的实验结果之间的总体一致性很好。 S0(在MR-AQCC / aug-cc-pVTZ + d水平)的平衡几何参数的最佳结果分别为C–Cl和C–F键距分别为1.762和1.323Å,同时具有相应的实验值是1.751和1.328Å。 ∠ClCF和∠FCF键角与相应的实验值(110.3°和108.6°)非常吻合。 ΔEvertical,ΔHdiss和f的最佳计算值是7.63 eV [在MR-AQCC / aug-cc-pV(T + d)Z级别],3.59 eV [MR-AQCC / aug-cc-pV(T + d)Z级+自旋轨道和BSSE校正]和2.74×10−3(MR-CISD / cc-pVTZ),与相应的实验值7.7±0.1 eV,3.68 eV和3.12×10−进行比较3±2.50×10-4。关于S0和S1的势能曲线的结果表明,随着基本集大小的增加,这两个状态之间(在沿着C-Cl坐标的中间区域)不会发生交叉的趋势。这种趋势伴随着S1状态阱深度的减小。动态电子相关性(尤其是在MR-AQCC级别)也是导致沿C-Cl坐标不交叉的重要因素。使用梯度驱动技术(在CASSCF和MR-CISD水平)对可能穿越的进一步研究似乎证实了它的不存在。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

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