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铜氢纳米球的非常规核心工程。

Unusual core engineering on a copper hydride nanoball.

机构信息

Department of Chemistry, National Dong Hwa University, Hualien 974301, Taiwan, Republic of China.

Univ Rennes, CNRS, ISCR-UMR 6226, F-35000 Rennes, France.

出版信息

Dalton Trans. 2023 Feb 14;52(7):2106-2114. doi: 10.1039/d2dt03449b.

DOI:10.1039/d2dt03449b
PMID:36722491
Abstract

A neutral polyhydrido copper cluster, [CuH{SCNBu}] (abbreviated as [CuH]), was prepared by the reaction of dithiocarbamates (dtc), Cu(I) salts and NaBH. The isolated cluster provides insights into core engineering, demonstrating its novel ability to reversibly add or remove one copper atom from the cluster core. Single-crystal X-ray analysis reveals that the new core-shell structure exhibits a Cu rhombicuboctahedral outer cage and an inner Cu triangular kernel. The two core-shell clusters, [CuH{SCNBu}] and previously published [CuH(SCNBu)] (abbreviated as [CuH]), are only differentiated by one copper atom in their inner core. Importantly, we demonstrate core engineering with the controllable reversible transition between an irregular Cu tetrahedron and a Cu triangle, whilst maintaining their outer Cu shell intact. The 15 hydride atoms in [CuH], coordinated in three different modes, are co-incident with the hydride positions in [CuH]. The degradation of [CuH] in solution or the addition of one eq. of Cu(I) ions leads to the conversion of [CuH] into [CuH], while the reverse transformation can be achieved by the addition of either formic acid or a reducing agent to [CuH]. A dicationic species was observed in the ESI mass spectrum, and the composition is formulated as [CuH(SCNBu)], a dimer of [CuH(SCNBu) + Cu]. The dimeric species was further explored by DFT calculations, suggesting that the lowest energy structure consists of a [CuH] and a [CuH] cluster connected through one Cu atom bridge. As a result, [CuH] is considered an intermediate species in the formation of the more stable [CuH] nanoball.

摘要

一种中性的多氢铜簇合物[CuH{SCNBu}](缩写为[CuH]),是通过二硫代氨基甲酸盐(dtc)、Cu(I)盐和 NaBH 的反应制备的。分离得到的簇合物提供了核心工程的见解,展示了其从簇核中可逆地添加或去除一个铜原子的新颖能力。单晶 X 射线分析表明,新的核壳结构表现出一个 Cu 菱形八面体的外笼和一个内部的 Cu 三角形核。两个核壳簇合物[CuH{SCNBu}]和之前发表的[CuH(SCNBu)](缩写为[CuH]),它们的内核仅相差一个铜原子。重要的是,我们通过可控的可逆转变,展示了核心工程,从不规则的 Cu 四面体转变为 Cu 三角形,同时保持其外 Cu 壳完整。[CuH]中的 15 个氢化物原子,以三种不同的模式配位,与[CuH]中的氢化物位置重合。在溶液中[CuH]的降解或加入一个当量的 Cu(I)离子,导致[CuH]转化为[CuH],而通过加入甲酸或还原剂,可以实现相反的转化。在 ESI 质谱中观察到一种二价物种,其组成式为[CuH(SCNBu)],是[CuH(SCNBu) + Cu]的二聚体。通过 DFT 计算进一步研究了二聚体物种,表明最低能量结构由一个[CuH]和一个[CuH]簇通过一个 Cu 原子桥连接而成。因此,[CuH]被认为是形成更稳定的[CuH]纳米球的中间物种。

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