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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Engineering polydopamine films with tailored behaviour for next-generation eumelanin-related hybrid devices
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Engineering polydopamine films with tailored behaviour for next-generation eumelanin-related hybrid devices

机译:工程化聚多巴胺薄膜,具有针对性的行为,适用于下一代与Eumelanin相关的混合设备

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Eumelanin-type biopolymers have attracted growing interest in the quest for soft bioinspired functional materials for application in organoelectronics. Recently, a metal-insulator-semiconductor device with a good quality interface was produced by spin coating of a commercial synthetic eumelanin-like material on a dry plasma-modified silicon surface. As a proof-of-concept step toward the design and implementation of next-generation eumelanin-inspired devices, we report herein an expedient chemical strategy to bestow n-type performance to polydopamine, a highly popular eumelanin-related biopolymer with intrinsic semiconductor behaviour, and to tune its electrical properties. The strategy relies on aerial co-oxidation of dopamine with suitable aromatic amines, e.g. 3-aminotyrosine or p-phenylenediamine, leading to good quality black polymeric films. Capacitance-voltage experiments on poly(dopamine/3-aminotyrosine) and poly(dopamine/p-phenylenediamine)-based metal insulator semiconductor devices on p-Si indicated a significant increase in flat band voltage with respect to polydopamine and previous synthetic eumelanin-based diodes. Variations of the flat band voltage under vacuum were observed for each device. These results point to polydopamine as a versatile eumelanin-type water-dependent semiconductor platform amenable to fine tuning of its electronic properties through incorporation of ir-conjugating aromatic amines to tailor functionality.
机译:Eumelanin型生物聚合物在寻求用于有机电子的软生物启发功能材料方面引起了越来越多的兴趣。近来,通过在干燥的等离子体改性的硅表面上旋涂市售合成的类金黄色素样材料来生产具有良好界面质量的金属-绝缘体-半导体器件。作为设计和实施下一代由Eumelanin启发的装置的概念验证步骤,我们在此报告了一种权宜的化学策略,以赋予聚多巴胺以n型性能,聚多巴胺是一种广受欢迎的具有内部半导体特性的Eumelanin相关生物聚合物,并调整其电性能。该策略依赖于多巴胺与合适的芳族胺的空中共氧化。 3-氨基酪氨酸或对苯二胺,可产生高质量的黑色聚合物薄膜。在p-Si上基于聚(多巴胺/ 3-氨基酪氨酸)和聚(多巴胺/对苯二胺)的金属绝缘体半导体器件的电容电压实验表明,与聚多巴胺和以前的合成的基于Eumelanin的基带相比,平带电压显着增加二极管。观察到每个器件在真空下的平带电压的变化。这些结果表明,聚多巴胺是一种多功能的金黄色素型水依赖型半导体平台,可通过掺入非共轭芳族胺来调整功能,从而对其电子性能进行微调。

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