Marco José F, Dávalos-Prado Juan Z, Hnyk Drahomír, Holub Josef, Oña Ofelia B, Alcoba Diego R, Ferrer Maxime, Elguero José, Lain Luis, Torre Alicia, Oliva-Enrich Josep M
Instituto de Química-Física "Rocasolano", CSIC, E-28006 Madrid, Spain.
Institute of Inorganic Chemistry of the Czech Academy of Sciences, CZ-250 68 Řež near Prague, Czech Republic.
ACS Omega. 2023 Apr 7;8(15):13993-14004. doi: 10.1021/acsomega.3c00422. eCollection 2023 Apr 18.
Mössbauer and X-ray photoelectron spectroscopies (XPS) are complemented with high-level quantum-chemical computations in the study of the geometric and electronic structure of the paramagnetic salt of the metallacarborane sandwich complex [Fe(1,2-CBH)]Cs = FeSanCs. Experimental Fe isomer shifts and quadrupole splitting parameters are compared with the theoretical prediction, with good agreement. The appearance of two sets of Cs(3d) doublets in the XPS spectrum, separated by 2 eV, indicates that Cs has two different chemical environments due to ease of the Cs cation moving around the sandwich complex with low-energy barriers, as confirmed by quantum-chemical computations. Several minimum-energy geometries of the FeSanCs structure with the corresponding energies and Mössbauer parameters are discussed, in particular the atomic charges and spin population and the surroundings of the Fe atom in the complex. The Mössbauer spectra were taken at different temperatures showing the presence of a low-spin Fe atom with = 1/2 and thus confirming a paramagnetic Fe species.
在研究金属碳硼烷夹心配合物[Fe(1,2-C₂B₉H₁₁)]Cs = FeSanCs的顺磁性盐的几何结构和电子结构时,穆斯堡尔光谱和X射线光电子能谱(XPS)辅以高水平的量子化学计算。将实验测得的铁同质异能位移和四极分裂参数与理论预测值进行比较,结果吻合良好。XPS光谱中出现两组相隔2 eV的Cs(3d)双峰,这表明由于Cs阳离子能够以低能垒围绕夹心配合物移动,Cs具有两种不同的化学环境,量子化学计算证实了这一点。讨论了FeSanCs结构的几种最低能量几何构型及其相应能量和穆斯堡尔参数,特别是配合物中Fe原子的原子电荷、自旋布居和周围环境。在不同温度下采集了穆斯堡尔光谱,结果表明存在自旋为1/2的低自旋Fe原子,从而证实了顺磁性Fe物种的存在。