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含氨基酸配体的混合金属杂化多金属氧酸盐:电子多功能性与溶液性质

Mixed-Metal Hybrid Polyoxometalates with Amino Acid Ligands: Electronic Versatility and Solution Properties.

作者信息

Bagherjeri Fateme Akhlaghi, Vonci Michele, Nagul Edward A, Ritchie Chris, Gable Robert W, Taylor Matthew B, Bryant Gary, Guo Si-Xuan, Zhang Jie, Aparicio Pablo A, López Xavier, Poblet Josep M, Boskovic Colette

机构信息

School of Chemistry, University of Melbourne , Parkville, Victoria 3010, Australia.

School of Science, RMIT University , Melbourne, Victoria 3001, Australia.

出版信息

Inorg Chem. 2016 Dec 5;55(23):12329-12347. doi: 10.1021/acs.inorgchem.6b02218. Epub 2016 Nov 15.

Abstract

Eight new members of a family of mixed-metal (Mo,W) polyoxometalates (POMs) with amino acid ligands have been synthesized and investigated in the solid state and solution using multiple physical techniques. While the peripheral POM structural framework is conserved, the different analogues vary in nuclearity of the central metal-oxo core, overall redox state, metal composition, and identity of the zwitterionic α-amino acid ligands. Structural investigations reveal site-selective substitution of Mo for W, with a strong preference for Mo to occupy the central metal-oxo core. This core structural unit is a closed tetrametallic loop in the blue reduced species and an open trimetallic loop in the colorless oxidized analogues. Density functional theory calculations suggest the core as the favored site of reduction and reveal that the corresponding molecular orbital is much lower in energy for a tetra- versus trimetallic core. The reduced species are diamagnetic, each with a pair of strongly antiferromagnetically coupled Mo centers in the tetrametallic core, while in the oxidized complexes all Mo is hexavalent. Solution small-angle X-ray scattering and circular dichroism (CD) studies indicate that the hybrid POM is stable in aqueous solution on a time scale of days within defined concentration and pH ranges, with the stability enhanced by the presence of excess amino acid. The CD experiments also reveal that the amino acid ligands readily exchange with other α-amino acids, and it is possible to isolate the products of amino acid exchange, confirming retention of the POM framework. Cyclic voltammograms of the reduced species exhibit an irreversible oxidation process at relatively low potential, but an equivalent reductive process is not evident for the oxidized analogues. Despite their overall structural similarity, the oxidized and 2e-reduced hybrid POMs are not interconvertible because of the respective open- versus closed-loop arrangement in the central metal-oxo cores.

摘要

合成了一族带有氨基酸配体的混合金属(钼、钨)多金属氧酸盐(POMs)的八个新成员,并使用多种物理技术对其在固态和溶液状态下进行了研究。虽然外围的POM结构框架是保守的,但不同的类似物在中心金属-氧核的核数、整体氧化还原状态、金属组成以及两性离子α-氨基酸配体的身份上有所不同。结构研究表明钼对钨存在位点选择性取代,钼强烈倾向于占据中心金属-氧核。这个核心结构单元在蓝色还原物种中是一个封闭的四金属环,在无色氧化类似物中是一个开放的三金属环。密度泛函理论计算表明该核心是还原的有利位点,并揭示对于四金属核与三金属核而言,相应的分子轨道能量要低得多。还原物种是抗磁性的,每个在四金属核中都有一对强反铁磁耦合的钼中心,而在氧化配合物中所有钼都是六价的。溶液小角X射线散射和圆二色性(CD)研究表明,在限定的浓度和pH范围内,杂化POM在数天的时间尺度内在水溶液中是稳定的,过量氨基酸的存在会增强其稳定性。CD实验还表明氨基酸配体很容易与其他α-氨基酸交换,并且有可能分离出氨基酸交换的产物,证实了POM框架的保留。还原物种的循环伏安图在相对较低的电位下表现出不可逆的氧化过程,但氧化类似物的等效还原过程并不明显。尽管它们在整体结构上相似,但由于中心金属-氧核中分别为开放与闭环排列,氧化和2e还原的杂化POM不能相互转化。

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