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A facile route to electronically conductive polyelectrolyte brushes as platforms of molecular wires

机译:方便地将导电聚电解质电刷用作分子线平台的途径

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摘要

A facile strategy for the synthesis of conjugated polyelectrolyte brushes grafted from a conductive surface is presented. Such brushes form a platform of molecular wires oriented perpendicularly to the surface, enabling efficient directional transport of charge carriers. As the synthesis of conjugated polymer brushes using chain-growth polymerization via a direct “grafting from” approach is very challenging, we developed a self-templating surface-initiated method. It is based on the formation of multimonomer template chains in the first surface-initiated polymerization step, followed by the second polymerization leading to conjugated chains in an overall ladder-like architecture. This strategy exploits the extended conformation of the surface-grafted brushes, thereby enabling alignment of the pendant polymerizable groups along the template chains. We synthesized a new bifunctional monomer and used the developed approach to obtain quaternized poly(ethynylpyridine) chains on a conductive indium tin oxide surface. A catalyst-free quaternization polymerization was for the first time used here for surface grafting. The presence of charged groups makes the obtained brushes both ionically and electronically conductive. After doping with iodine, the brushes exhibited electronic conductivity, in the direction perpendicular to the surface, as high as 10–1–100 S m–1. Tunneling AFM was used for mapping the surface conductivity and measuring the conductivity in the spectroscopic mode. The proposed synthetic strategy is very versatile as a variety of monomers with pendant polymerizable groups and various polymerization techniques may be applied, leading to platforms of molecular wires with the desired characteristics.
机译:提出了一种用于合成从导电表面接枝的共轭聚电解质电刷的简便策略。这种电刷形成垂直于表面定向的分子线平台,从而实现了载流子的有效定向传输。由于使用链增长聚合法通过直接的“接枝”方法合成共轭聚合物刷非常具有挑战性,因此我们开发了一种自模板表面引发的方法。它基于在第一表面引发的聚合步骤中多单体模板链的形成,然后在第二聚合过程中形成整体梯形体系中的共轭链。该策略利用了表面嫁接的刷子的扩展构象,从而使可悬垂的可聚合基团沿着模板链对齐。我们合成了一种新的双功能单体,并使用开发的方法在导电的铟锡氧化物表面上获得季铵化的聚乙炔基吡啶链。在此首次将无催化剂的季铵化聚合反应用于表面接枝。带电基团的存在使所获得的刷子具有离子导电性和电子导电性。掺杂碘后,电刷在垂直于表面的方向上显示出高达10 –1 –10 0 S m –1 < / sup>。隧道原子力显微镜用于在光谱模式下绘制表面电导率并测量电导率。所提出的合成策略非常通用,因为可以使用具有可悬挂侧基的各种单体,并且可以应用各种聚合技术,从而形成具有所需特性的分子线平台。

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