首页> 外文期刊>Chemistry Select >Energetics and Spectroscopic Properties of Low-lying CaC6H2 Isomers: An Astrochemical Perspective
【24h】

Energetics and Spectroscopic Properties of Low-lying CaC6H2 Isomers: An Astrochemical Perspective

机译:低洼CAC6H2异构体的能量和光谱特性:天文学透视图

获取原文
获取原文并翻译 | 示例
           

摘要

The spectroscopic constants and molecular properties of low-lying isomers of CaC6H2 have been studied using dispersion-corrected density functional theory, MP2 and high-level coupled-cluster (CC) methods. 60 isomers have been identified, among which three low-lying isomers having energy differences within 1 eV have been re-optimized at MP2/cc-pVTZ level. Isomer 1 (1-calciacyclohepta-4-en-2,6-diyne) is found to be the most stable one, followed by isomer 3 (3-calciahepta-1,4,6-triyne) and isomer 2 (1-calciacyclohepta-2,3,4-trien-6-yne) that lie 20.9 and 19.7 kcal/mol above 1, respectively at MP2/cc-pVTZ level. All three isomers are polar with a permanent electric dipole moment. Molecular properties like electron affinity, ionization potential as well as GCRD parameters, i.e., chemical potential, global hardness, etc. have been calculated at ae-CCSD(T)/cc-pVTZ level. NBO and AIM analyses have been performed to predict the nature of bonds in the isomers. The spectroscopic constants such as rotational and centrifugal distortion constants, inertial axis dipole moment components, etc. have been calculated using the frozen core (fc)-CCSD(T) and all electron (ae)-CCSD(T) methods with cc-pVTZ basis. The ae-CCSD(T) method with cc-pwCVTZ-X2C basis set has also been used to calculate spectroscopic constants. The predicted spectroscopic constants and molecular properties will facilitate in detecting these isomers in the laboratory as well as in interstellar medium (ISM).
机译:使用分散校正的密度函数理论,MP2和高级耦合群集(CC)方法,已经研究了CAC6H2低凹异构体的光谱常数和分子特性。已经鉴定出60个异构体,其中三个在1 eV中具有能量差异的低洼异构体在MP2/CC-PVTZ水平下已重新优化。发现异构体1(1-钙齐lohepta-4-en-2,6-diyne)是最稳定的,其次是Isomer 3(3-钙调子1,4,6-6- triyne)和Isomer 2(1-钙调子2 -2,3,4-trien-6-yne)分别在mp2/cc-pvtz水平上分别为20.9和19.7 kcal/mol 1。所有三个异构体都是极性的,具有永久的电偶极矩。在AE-CCSD(T)/CC-PVTZ水平上计算了分子特性,例如电子亲和力,电离势和GCRD参数,即化学势,全球硬度等。已经进行了NBO和AIM分析以预测异构体中键的性质。光谱常数(例如旋转和离心失真常数,惯性轴偶极矩成分等)已使用冷冻核心(FC)-CCSD(T)和所有电子(AE)-CCSD(T)方法计算出使用CC-PVTZ基础。具有CC-PWCVTZ-X2C基集的AE-CCSD(T)方法也已用于计算光谱常数。预测的光谱常数和分子特性将有助于检测实验室和星际培养基(ISM)中的这些异构体。

著录项

  • 来源
    《Chemistry Select》 |2022年第22期|共11页
  • 作者单位

    School of Mathematical and Computational Sciences, Indian Association for the Cultivation of Science, Jadavpur, Kolkata 700032, India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 Online;
  • 关键词

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