首页> 外文期刊>The Journal of Chemical Physics >Ab initio electronic structure of HCN~- and HNC~- dipole-bound anions and a description of electron loss upon tautomerization
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Ab initio electronic structure of HCN~- and HNC~- dipole-bound anions and a description of electron loss upon tautomerization

机译:HCN〜-和HNC〜-偶极结合阴离子的从头算电子结构和互变异构过程中电子损失的描述

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The binding of an excess electron to HCN and HNC was studied at the coupled cluster level of theory with single, double, and noniterative triple excitations and with extended basis sets to accommodate the loosely bound excess electron. The HCN molecule, with a dipole moment of 3.05 Debye, binds an electron by 10 cm , whereas the HNC tautomer possesses a similar dipole moment (3.08 Debye) and binds the electron by 43 cm’. The electronic stability of the anionic system along the minimum energy HCN—~HNC tautomerization path has been investigated, and it was concluded that the excess electron autodetaches during the tautomerization. Unusually large electron correlation energy contributions to the total electron binding energy were found and are discussed.
机译:在理论上的耦合簇水平下,利用单,双和非迭代三重激发以及扩展的基集来容纳多余的电子与HCN和HNC的结合,以适应松散结合的过量电子。 HCN分子偶极矩为3.0​​5 Debye,与电子结合10 cm,而HNC互变异构体具有相似的偶极矩(3.08 Debye),与电子结合43 cm'。研究了沿着最小能量HCN-〜HNC互变异构路径的阴离子体系的电子稳定性,并得出结论,过量电子在互变异构过程中会自动分离。发现并讨论了异常大的电子相关能对总电子结合能的贡献。

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