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利用溶液态和固态硫 K 边 X 射线吸收光谱结合密度泛函理论来评估 MS4(2-)(M = Cr、Mo、W)二价阴离子中的 M-S 键。

Using solution- and solid-state S K-edge X-ray absorption spectroscopy with density functional theory to evaluate M-S bonding for MS4(2-) (M = Cr, Mo, W) dianions.

作者信息

Olson Angela C, Keith Jason M, Batista Enrique R, Boland Kevin S, Daly Scott R, Kozimor Stosh A, MacInnes Molly M, Martin Richard L, Scott Brian L

机构信息

Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.

出版信息

Dalton Trans. 2014 Dec 14;43(46):17283-95. doi: 10.1039/c4dt02302a.

Abstract

Herein, we have evaluated relative changes in M-S electronic structure and orbital mixing in Group 6 MS4(2-) dianions using solid- and solution-phase S K-edge X-ray absorption spectroscopy (XAS; M = Mo, W), as well as density functional theory (DFT; M = Cr, Mo, W) and time-dependent density functional theory (TDDFT) calculations. To facilitate comparison with solution measurements (conducted in acetonitrile), theoretical models included gas-phase calculations as well as those that incorporated an acetonitrile dielectric, the latter of which provided better agreement with experiment. Two pre-edge features arising from S 1s → e* and t electron excitations were observed in the S K-edge XAS spectra and were reasonably assigned as (1)A1 → (1)T2 transitions. For MoS4(2-), both solution-phase pre-edge peak intensities were consistent with results from the solid-state spectra. For WS4(2-), solution- and solid-state pre-edge peak intensities for transitions involving e* were equivalent, while transitions involving the t orbitals were less intense in solution. Experimental and computational results have been presented in comparison to recent analyses of MO4(2-) dianions, which allowed M-S and M-O orbital mixing to be evaluated as the principle quantum number (n) for the metal valence d orbitals increased (3d, 4d, 5d). Overall, the M-E (E = O, S) analyses revealed distinct trends in orbital mixing. For example, as the Group 6 triad was descended, e* (π*) orbital mixing remained constant in the M-S bonds, but increased appreciably for M-O interactions. For the t orbitals (σ* + π*), mixing decreased slightly for M-S bonding and increased only slightly for the M-O interactions. These results suggested that the metal and ligand valence orbital energies and radial extensions delicately influenced the orbital compositions for isoelectronic ME4(2-) (E = O, S) dianions.

摘要

在此,我们使用固相和溶液相S K边X射线吸收光谱法(XAS;M = Mo、W)以及密度泛函理论(DFT;M = Cr、Mo、W)和含时密度泛函理论(TDDFT)计算,评估了第6族MS4(2-)二价阴离子中M-S电子结构和轨道杂化的相对变化。为便于与溶液测量结果(在乙腈中进行)进行比较,理论模型包括气相计算以及纳入乙腈介电常数的计算,后者与实验结果吻合得更好。在S K边XAS光谱中观察到由S 1s→e和t电子激发产生的两个预边特征,并合理地归为(1)A1→(1)T2跃迁。对于MoS4(2-),溶液相预边峰强度均与固态光谱结果一致。对于WS4(2-),涉及e的跃迁的溶液相和固态预边峰强度相当,而涉及t轨道的跃迁在溶液中的强度较小。与最近对MO4(2-)二价阴离子的分析相比,已给出了实验和计算结果,这使得随着金属价d轨道的主量子数(n)增加(3d、4d、5d),M-S和M-O轨道杂化得以评估。总体而言,M-E(E = O、S)分析揭示了轨道杂化的明显趋势。例如,随着第6族三元素组向下排列,e*(π*)轨道杂化在M-S键中保持不变,但在M-O相互作用中显著增加。对于t轨道(σ* + π*),M-S键合的杂化略有下降,而M-O相互作用的杂化仅略有增加。这些结果表明,金属和配体价轨道能量以及径向延伸对等电子ME4(2-)(E = O、S)二价阴离子的轨道组成有微妙影响。

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