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光谱特征描述、计算研究及 ECX(E = As、P 和 N;X = S 和 O)阴离子的比较。

Spectroscopic Characterization, Computational Investigation, and Comparisons of ECX (E = As, P, and N; X = S and O) Anions.

机构信息

Physical Sciences Division, Pacific Northwest National Laboratory , P.O. Box 999, Richland, Washington 99352, United States.

Baker Laboratory, Department of Chemistry and Chemical Biology, Cornell University , Ithaca, New York 14853, United States.

出版信息

J Am Chem Soc. 2017 Jul 5;139(26):8922-8930. doi: 10.1021/jacs.7b02984. Epub 2017 Jun 23.

Abstract

Three newly synthesized [Na(221-Kryptofix)] salts containing AsCO, PCO, and PCS anions were successfully electrosprayed into a vacuum, and these three ECX anions were investigated by negative ion photoelectron spectroscopy (NIPES) along with high-resolution photoelectron imaging spectroscopy. For each ECX anion, a well-resolved NIPE spectrum was obtained, in which every major peak is split into a doublet. The splittings are attributed to spin-orbit coupling (SOC) in the ECX radicals. Vibrational progressions in the NIPE spectra of ECX were assigned to the symmetric and the antisymmetric stretching modes in ECX radicals. The electron affinities (EAs) and SO splittings of ECX are determined from the NIPE spectra to be AsCO: EA = 2.414 ± 0.002 eV, SO splitting = 988 cm; PCO: EA = 2.670 ± 0.005 eV, SO splitting = 175 cm; PCS: EA = 2.850 ± 0.005 eV, SO splitting = 300 cm. Calculations using the B3LYP, CASPT2, and CCSD(T) methods all predict linear geometries for both the anions and the neutral radicals. The calculated EAs and SO splittings for ECX are in excellent agreement with the experimentally measured values. The simulated NIPE spectra, which are based on the calculated Franck-Condon factors, and the SO splittings nicely reproduce all of the observed spectral peaks, thus allowing unambiguous spectral assignments. The finding that PCS has the greatest EA of the three triatomic molecules considered here is counterintuitive based upon simple electronegativity considerations, but this finding is understandable in terms of the movement of electron density from phosphorus in the HOMO of PCO to sulfur in the HOMO of PCS. Comparisons of the EAs of PCO and PCS with the previously measured EA values for NCO and NCS are made and discussed.

摘要

三种新合成的[Na(221-Kryptofix)]盐,其中含有 AsCO、PCO 和 PCS 阴离子,成功地被电喷雾到真空中,并用负离子光电子能谱(NIPES)和高分辨率光电子成像光谱法对这三种 ECX 阴离子进行了研究。对于每种 ECX 阴离子,都得到了一个分辨率良好的 NIPE 光谱,其中每个主要峰都分裂成一对。这些分裂归因于 ECX 自由基中的自旋轨道耦合(SOC)。在 ECX 的 NIPE 光谱中,振动进展被分配到 ECX 自由基的对称和反对称伸缩模式。从 NIPE 光谱中确定 ECX 的电子亲和能(EA)和 SO 分裂为 AsCO:EA=2.414±0.002 eV,SO 分裂=988 cm;PCO:EA=2.670±0.005 eV,SO 分裂=175 cm;PCS:EA=2.850±0.005 eV,SO 分裂=300 cm。使用 B3LYP、CASPT2 和 CCSD(T)方法进行的计算都预测了阴离子和中性自由基的线性几何形状。计算出的 ECX 的 EA 和 SO 分裂与实验测量值非常吻合。基于计算出的 Franck-Condon 因子的模拟 NIPE 光谱以及 SO 分裂很好地再现了所有观察到的谱峰,从而可以进行明确的光谱分配。考虑到这里所考虑的三种三原子分子的简单电负性考虑,PCS 具有最大 EA 的发现是违反直觉的,但根据 PCO 的 HOMO 中的磷向 PCS 的 HOMO 中的硫转移电子密度的情况,这一发现是可以理解的。还对 PCO 和 PCS 的 EA 与之前测量的 NCO 和 NCS 的 EA 值进行了比较和讨论。

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