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立体化学活性孤对电子对三钒酸盐磁有序的影响。

Effect of Stereochemically Active Electron Lone Pairs on Magnetic Ordering in Trivanadates.

作者信息

Agbeworvi George, Zaheer Wasif, Ponis John D, Handy Joseph V, Ayala Jaime R, Andrews Justin L, Schofield Parker, Jaye Cherno, Weiland Conan, Fischer Daniel A, Banerjee Sarbajit

机构信息

Department of Chemistry and Department of Material Science and Engineering, Texas A&M University, College Station, Texas 77845-3012, United States.

Material Measurement Laboratory, National Institute of Standards and Technology, Gaithersburg, Maryland 20899, United States.

出版信息

Inorg Chem. 2023 Aug 14;62(32):12965-12975. doi: 10.1021/acs.inorgchem.3c01760. Epub 2023 Aug 2.

Abstract

Stereoactive electron lone pairs derived from filled 5/6s states of p-block cations are an intriguing electronic and geometric structure motif that have been exploited for diverse applications such as thermoelectrics, thermochromics, photocatalysis, and nonlinear optics. Layered trivanadates are dynamic intercalation hosts, where the insertion of cations can be used to tune electron correlation, charge localization, and magnetic ordering. However, the interaction of 5/6s stereoactive electron lone pairs with layered trivanadates remains unexplored. In this study, we contrast s- and p-block trivanadates and map off-centering in the coordination environment and reduction in symmetry arising from the stereochemical activity of lone pair cations to the emergence of filled antibonding lone-pair 6s-O 2p hybridized states. The former is studied by high-resolution single-crystal X-ray diffraction studies of TlVO and isostructural RbVO to probe distinct differences in Tl and Rb coordination environments and the resulting modulation of V-V interactions in VO slabs. The latter has been probed by variable-energy hard X-ray photoelectron spectroscopy (HAXPES) measurements, which manifest orbital-specific contributions from bonding and antibonding interactions of stereoactive Tl 6s electron lone pairs in TlVO. The spectroscopic assignment of valence band states to stereoactive lone pairs is further corroborated by first-principles electronic structure calculations, crystal orbital Hamilton population analyses, and electron localization function maps. The presence of the Tl 6s electron lone pair in TlVO brings about the off-centering of Tl cations, which leads to anisotropy in Tl-O bonds. The off-centering of Tl ions weakens V-O bonds in one direction, which subsequently strengthens directional V-V coupling. Magnetic measurements reveal ferromagnetic signatures for both RbVO and TlVO. However, the differences in V···V interactions significantly affect the energy balance of the superexchange interactions, resulting in an ordering temperature of 140 K for TlVO as compared to 125 K for RbVO. The results demonstrate the distinctive effects of stereochemically active lone pairs in modifying electronic structure near the Fermi level and for mediating superexchange interactions.

摘要

源自p族阳离子满壳层5/6s态的立体活性孤对电子是一种引人入胜的电子和几何结构基序,已被用于热电、热致变色、光催化和非线性光学等多种应用。层状三钒酸盐是动态插层主体,阳离子的插入可用于调节电子关联、电荷局域化和磁有序。然而,5/6s立体活性孤对电子与层状三钒酸盐的相互作用仍未得到探索。在本研究中,我们对比了s族和p族三钒酸盐,并描绘了配位环境中的偏离中心以及由于孤对阳离子的立体化学活性导致的对称性降低与满壳层反键孤对6s-O 2p杂化态出现之间的关系。前者通过对TlVO和同构的RbVO进行高分辨率单晶X射线衍射研究来探究Tl和Rb配位环境的明显差异以及VO板中V-V相互作用的相应调制。后者通过可变能量硬X射线光电子能谱(HAXPES)测量进行探测,该测量揭示了TlVO中立体活性Tl 6s电子孤对的键合和反键相互作用的轨道特异性贡献。价带态到立体活性孤对的光谱归属通过第一性原理电子结构计算、晶体轨道哈密顿布居分析和电子局域化函数图得到进一步证实。TlVO中Tl 6s电子孤对的存在导致Tl阳离子偏离中心,从而导致Tl-O键的各向异性。Tl离子的偏离中心在一个方向上削弱了V-O键,随后增强了定向V-V耦合。磁性测量揭示了RbVO和TlVO的铁磁特征。然而,V···V相互作用的差异显著影响了超交换相互作用的能量平衡,导致TlVO的有序温度为140 K,而RbVO为125 K。结果表明了立体化学活性孤对在修饰费米能级附近的电子结构以及介导超交换相互作用方面的独特作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d70/10862544/cc9fefde3ff1/ic3c01760_0001.jpg

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