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包含元素周期表相邻元素的异三金属混合价态分子前驱体:金属位置和氧化态的确定

Heterotrimetallic Mixed-Valent Molecular Precursors Containing Periodic Table Neighbors: Assignment of Metal Positions and Oxidation States.

作者信息

Han Haixiang, Carozza Jesse C, Colliton Audra P, Zhang Yuxuan, Wei Zheng, Filatov Alexander S, Chen Yu-Sheng, Alkan Melisa, Rogachev Andrey Yu, Dikarev Evgeny V

机构信息

Department of Chemistry, University at Albany, State University of New York, Albany, NY, 12222, USA.

Department of Materials Science and Engineering, Cornell University, Ithaca, NY, 14850, USA.

出版信息

Angew Chem Int Ed Engl. 2020 Jun 8;59(24):9624-9630. doi: 10.1002/anie.202001083. Epub 2020 Apr 1.

Abstract

A known trinuclear structure was used to design the heterobimetallic mixed-valent, mixed-ligand molecule [Co (hfac) -Na-Co (acac) ] (1). This was used as a template structure to develop heterotrimetallic molecules [Co (hfac) -Na-Fe (acac) ] (2) and [Ni (hfac) -Na-Co (acac) ] (3) via isovalent site-specific substitution at either of the cobalt positions. Diffraction methods, synchrotron resonant diffraction, and multiple-wavelength anomalous diffraction were applied beyond simple structural investigation to provide an unambiguous assignment of the positions and oxidation states for the periodic table neighbors in the heterometallic assemblies. Molecules of 2 and 3 are true heterotrimetallic rather than a statistical mixture of two heterobimetallic counterparts. Trinuclear platform 1 exhibits flexibility in accommodating a variety of di- and trivalent metals, which can be further utilized in the design of molecular precursors for the NaMM'O functional oxide materials.

摘要

一种已知的三核结构被用于设计异双金属混合价态、混合配体分子[Co(hfac)-Na-Co(acac)] (1)。该结构被用作模板结构,通过在钴的任一位置进行等价位点特异性取代,来开发异三金属分子[Co(hfac)-Na-Fe(acac)] (2)和[Ni(hfac)-Na-Co(acac)] (3)。除了简单的结构研究之外,还应用了衍射方法、同步加速器共振衍射和多波长反常衍射,以明确异金属组装体中元素周期表相邻元素的位置和氧化态。2和3的分子是真正的异三金属分子,而不是两种异双金属对应物的统计混合物。三核平台1在容纳各种二价和三价金属方面表现出灵活性,这可进一步用于设计NaMM'O功能氧化物材料的分子前驱体。

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