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首页> 外文期刊>Angewandte Chemie >Stabilizing and Organizing Bi3Cu4 and Bi7Cu12 Nanoclusters in Two-Dimensional Metal-Organic Networks
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Stabilizing and Organizing Bi3Cu4 and Bi7Cu12 Nanoclusters in Two-Dimensional Metal-Organic Networks

机译:在二维金属 - 有机网络中稳定和组织BI3CU4和BI7CU12纳米单元

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摘要

Multinuclear heterometallic nanoclusters with controllable stoichiometry and structure are anticipated to possess promising catalytic, magnetic, and optical properties. Heterometallic nanoclusters with precise stoichiometry of Bi3Cu4 and Bi7Cu12 can be stabilized in the scaffold of two-dimensional metal-organic networks on a Cu(111) surface through on-surface metallosupramolecular self-assembly processes. The atomic structures of the nanoclusters were resolved using scanning tunneling microscopy and density functional theory calculations. The nanoclusters feature highly symmetric planar hexagonal shapes and core-shell charge modulation. The clusters are arranged as triangular lattices with a periodicity that can be tuned by choosing molecules of different size. This work shows that on-surface metallosupramolecular self-assembly creates unique possibilities for the design and synthesis of multinuclear heterometallic nanoclusters.
机译:预期具有可控化学计量和结构的多核异常纳米蛋白酶具有有前景的催化,磁性和光学性质。 具有Bi3Cu4和Bi7Cu12的精确化学计量的杂机纳米团簇可以在Cu(111)表面上的二维金属 - 有机网络的支架中稳定在Cu(111)表面上,通过表面金属分子自组装方法在Cu(111)表面上。 使用扫描隧道显微镜和密度泛函理论计算解决纳米能器的原子结构。 纳米能器具有高度对称的平面六边形形状和核心壳电荷调制。 簇被布置为三角形格子,周期性可以通过选择不同尺寸的分子来调谐。 这项工作表明,表面金属仿性分子自组装为多核杂核纳米能器的设计和合成产生独特的可能性。

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