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Perylenetetracarboxylic-metal assemblies and anisotropic charge transport in a Cu-II assembly

机译:Perylenetetracarboxylic-metal组件和各向异性电荷传输Cu-II组装

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Structural diversity and uniformity of nanomaterials are usually prerequisites for many practical applications involving the oriented fabrication of various devices with full control over their desired physiochemical properties. Particularly in the optoelectronic field, ordered assembly inside cells is required not only for obtaining attractive configurations but also for playing an important role in the characteristics of photoconduction and conductivity. Here, we present a synergetic self-assembly driven by coordination and intermolecular interactions for the construction of organic-inorganic hybrids with multi-morphologies and tunable physical properties. 3,4,9,10-Perylenetetracarboxylic dianhydride was treated with base to produce various assemblies by coordination with metal ions, showing morphologies of nanowires, nanosheets, nanoribbons and nanorods. The organic pi-spacer affords an extension in different directions through the suitable incorporation of metal ions with different coordination modes for the formation of metal-ligand complexes. Interestingly, the obtained nanorods were twisted rods with obvious screw threads on the rod wall, supporting the synergetic self-assembly. Then, anisotropic mobility measurements of the obtained Cu2+-ligand assembly were carried out to show the importance of the size-and shape-confined synthesis of the hybrids. By presenting a series of ordered metal-ligand complex superstructures driven by synergetic self-assembly, this work is expected to pave the way for future anisotropic measurements of complex assemblies.
机译:结构的多样性和均匀性许多纳米材料通常是先决条件面向实际应用的制造各种设备的完全控制在他们期望的理化性质。特别是在光电子领域,命令道组装细胞内不仅是必需的而且对获得有吸引力的配置特征起着重要的作用光电导和电导率。提供一个协同作用的自组装的协调和分子间的相互作用有机-无机混合动力车的建设multi-morphologies和可调的身体属性。甲酸二酐是处理生产基地各种组件与金属的协调离子,显示出纳米线的形态,nanosheets, nanoribbons和纳米棒。pi-spacer提供不同的扩展通过合适的方向金属离子与不同的协调模式metal-ligand复合物的形成。有趣的是,获得纳米棒被扭曲棒与明显的螺纹杆墙,支持协作的自组装。各向异性流动测量获得Cu2 +配体组装进行显示的重要性大小和shape-confined合成的混合动力车。命令metal-ligand复杂的上层建筑由协同作用的自组装,这工作预计未来各向异性铺平了道路测量复杂的组件。

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