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异硫氰酸酯的临时阴离子态与解离电子附着

Temporary anion states and dissociative electron attachment to isothiocyanates.

作者信息

Modelli Alberto, Jones Derek

机构信息

Dipartimento di Chimica G. Ciamician, Università di Bologna, via Selmi 2, 40126 Bologna, Centro Interdipartimentale di Ricerca in Scienze Ambientali (CIRSA), Università di Bologna, via S. Alberto 163, 48100 Ravenna, Italy.

出版信息

J Phys Chem A. 2006 Dec 14;110(49):13195-201. doi: 10.1021/jp064961x.

Abstract

The temporary anion states of isothiocyanates CH3CH2=C=S (and CH3CH2N=C=O for comparison), C6H5CH2N=C=S, and C6H5N=C=S are characterized experimentally in the gas phase for the first time by means of electron transmission spectroscopy (ETS). The measured vertical electron attachment energies (VAEs) are compared with the virtual orbital energies of the neutral-state molecules supplied by MP2 and B3LYP calculations with the 6-31G* basis set. The calculated energies, scaled with empirical equations, reproduce satisfactorily the experimental VAEs. The first VAE is also closely reproduced as the total energy difference between the anion and neutral states calculated at the B3LYP/6-31+G* level. Due to mixing between the ring and N=C=S pi-systems, C6H5N=C=S possesses the best electron-acceptor properties, and its lowest-lying anion state is largely localized at the benzene ring. The anion states with mainly piC=S and piN=C character lie at higher energy than the corresponding anion states of noncumulated pi-systems. However, the electron-acceptor properties of isothiocyanates are found to be notably larger than those of the corresponding oxygen analogues (isocyanates). The dissociative electron attachment (DEA) spectra show peaks close to zero energy and at 0.6 eV, essentially due to NCS- negative fragments. In spite of the energy proximity of the first anion state in phenyl isothiocyanate to the DEA peak, the zero-energy anion current in the benzyl derivative is about 1 order of magnitude larger.

摘要

首次通过电子传输光谱法(ETS)在气相中对异硫氰酸酯CH3CH2=C=S(以及作为对比的CH3CH2N=C=O)、C6H5CH2N=C=S和C6H5N=C=S的临时阴离子态进行了实验表征。将测得的垂直电子附着能(VAE)与采用6-31G基组的MP2和B3LYP计算提供的中性态分子的虚拟轨道能进行了比较。用经验方程进行标度后的计算能量令人满意地再现了实验VAE。第一个VAE也作为在B3LYP/6-31+G水平计算得到的阴离子态和中性态之间的总能差被紧密再现。由于环与N=C=S π-体系之间的混合,C6H5N=C=S具有最佳的电子受体性质,其最低能量的阴离子态主要定域在苯环上。主要具有πC=S和πN=C特征的阴离子态比非累积π-体系的相应阴离子态能量更高。然而,发现异硫氰酸酯的电子受体性质明显大于相应的氧类似物(异氰酸酯)。离解电子附着(DEA)光谱显示在接近零能量和0.6 eV处有峰,主要归因于NCS-负离子碎片。尽管苯基异硫氰酸酯中第一个阴离子态的能量与DEA峰接近,但苄基衍生物中的零能量阴离子电流大约大一个数量级。

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