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首页> 外文期刊>ACS nano >Two-Dimensional Growth of Large-Area Conjugated Polymers on Ice Surfaces: High Conductivity and Photoelectrochemical Applications
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Two-Dimensional Growth of Large-Area Conjugated Polymers on Ice Surfaces: High Conductivity and Photoelectrochemical Applications

机译:冰表面上大面积共轭聚合物的二维生长:高导电性和光电化学应用

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摘要

Polymerizing monomers on an atomically flat solid surface and air/water, solid/liquid, or liquid/liquid interface is now a rapidly emerging frontier. Dimension controlled synthesis of pi-conjugated polymers is of particular interest, which can be achieved by precise control of monomer distribution during the polymerization. The surface of ice allows rapid polymerization of monomers in the plane direction along the air water interface to yield large-area two-dimensional sheet-like poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (2D sheet like PEDOT:PSS) films with a thickness of ca. 30 nm. The persuasive role of ice chemistry is reflected in the high degree of crystallinity and superior conductivity of resultant PEDOT:PSS films. Excellent photoelectrochemical features were further disclosed when the ice-templated PEDOT:PSS films were coupled to quantum dots. Utilization of these polymer films in photovoltaic devices also resulted in excellent current density and power conversion efficiency. This work presents an innovative material technology that goes beyond traditional and ubiquitous inorganic 2D materials such as graphene and MoS2 for integrated electronic applications.
机译:在原子平固体表面和空气/水,固体/液体或液体/液体界面上聚合单体现在是一个快速的新兴的边界。尺寸控制合成PI缀合的聚合物是特别的感兴趣的,这可以通过精确控制聚合过程中的单体分布来实现。冰表面允许沿着空气界面在平面方向上快速聚合单体,得到大面积二维薄片聚(3,4-亚乙二氧基噻吩):聚(苯乙烯磺酸盐)(如PEDOT:PSS)薄膜厚度为CA。 30纳米。冰化学的有说服力作用反映在高度的结晶度和优异的所得型号的导电性:PSS薄膜。进一步公开了优异的光电化学特征,当冰晶层的转型时:PSS膜偶联到量子点。在光伏器件中利用这些聚合物膜也导致电流密度优异和功率转换效率。这项工作提出了一种创新的材料技术,超出了传统和无处不在的无机2D材料,例如石墨烯和MOS2,用于集成电子应用。

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