Institut des Sciences Moléculaires d'Orsay (ISMO), UMR 8214 CNRS, Univ. Paris-Sud, Université Paris-Saclay, F-91405 Orsay, France.
Phys Chem Chem Phys. 2019 Jan 30;21(5):2337-2344. doi: 10.1039/c8cp07737a.
The photoelectron spectrum of the X1Σ+ → X+2Σ+ ionizing transition of hydrogen isocyanide (HNC) is measured for the first time at a fixed photon energy (13 eV). The assignment of the spectrum is supported by wave-packet calculations simulating the photoionization transition spectrum and using ab initio calculations of the potential energy surfaces for the three lowest electronic states of the cation. The photoelectron spectrum allows the retrieval of the fundamental of the CN stretching mode of the cationic ground state ([small nu, Greek, tilde]3 = 2260 ± 80 cm-1) and the adiabatic ionization energy of hydrogen isocyanide: IE(HNC) = 12.011 ± 0.010 eV, which is far below that of HCN (IE(HCN) = 13.607 eV). In light of this latter result, the thermodynamics of the HCN+/HNC+ isomers is discussed and a short summary of the values available in the literature is given.
氢异氰酸根(HNC)的 X1Σ+ → X+2Σ+ 电离跃迁的光电子能谱是首次在固定光子能量(13 eV)下测量得到的。该谱的归属得到了波包计算的支持,该计算模拟了光致电离跃迁谱,并使用了阳离子三个最低电子态的从头算势能面计算。光电子谱允许检索阳离子基态的 CN 伸缩模式的基频([small nu, Greek, tilde]3 = 2260 ± 80 cm-1)和氢异氰酸的绝热电离能:IE(HNC) = 12.011 ± 0.010 eV,远低于 HCN 的电离能(IE(HCN) = 13.607 eV)。鉴于后一个结果,讨论了 HCN+/HNC+异构体的热力学,并给出了文献中可用值的简短总结。