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pi-Conjugated bis(terpyridine) metal complex molecular wires

机译:π共轭双(三吡啶)金属配合物分子线

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Bottom-up approaches have gained significant attention recently for the creation of nano-sized, ordered functional structures and materials. Stepwise coordination techniques, in which ligand molecules and metal sources are reacted alternatively, offer several advantages. Coordination bonds are stable, reversible, and self-assembling, and the resultant metal complex motifs may contain functionalities unique to their own characteristics. This review focuses on metal complex wire systems, specifically the bottom-up fabrication of linear and branched bis(terpyridine) metal complex wires on electrode surfaces. This system possesses distinct and characteristic electronic functionalities, intra-wire redox conduction and excellent long-range electron transport ability. This series of comprehensive studies exploited the customizability of bis(terpyridine) metal complex wires, including examining the influence of building blocks. In addition, simple yet effective electron transfer models were established for redox conduction and long-range electron transport. A fabrication technique for an ultra-long bis(terpyridine) metal complex wire is also described, along with its properties and functionalities.
机译:自下而上的方法最近在纳米尺寸,有序功能结构和材料的创建方面引起了广泛关注。配位体分子和金属源交替反应的逐步配位技术具有多个优点。配位键是稳定的,可逆的和自组装的,所得的金属配合物基序可能包含其自身特征所独有的功能。这篇综述着重于金属复合线系统,特别是在电极表面上自下而上的线性和支化双(三联吡啶)金属复合线的制造。该系统具有独特的电子功能,线内氧化还原传导和出色的远距离电子传输能力。这一系列的综合研究利用了双(吡啶)金属络合物的可定制性,包括检查构件的影响。此外,建立了简单而有效的电子传输模型以实现氧化还原传导和远距离电子传输。还描述了一种超长双(三联吡啶)金属复合线的制造技术,以及其特性和功能。

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