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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Supplementing pi-systems: eumelanin and graphene-like integration towards highly conductive materials for the mammalian cell culture bio-interface
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Supplementing pi-systems: eumelanin and graphene-like integration towards highly conductive materials for the mammalian cell culture bio-interface

机译:补充pi系统:将Eumelanin和类石墨烯整合为哺乳动物细胞培养生物界面的高导电材料

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摘要

Organic (bio)electronics appears to be the first target for competitive exploitation in the materials science of eumelanins, black insoluble photoprotective human biopolymers. Nonetheless, the low conductivity of these pigments is limiting the implementation of eumelanin-based devices. Here we present a novel organic/organic hybrid material (EUGL) by integration of conductive graphene-like (GL) layers within the EUmelanin pigment (EU). GL layers were obtained by a two-step oxidation/reduction of carbon black. The stability of GL layers over a wide pH range and the self-assembling tendency place this material in a leading position for the fabrication of hybrid materials in aqueous media. EUGL was obtained by inducing the polymerization of eumelanin precursors (5,6-dihydroxyindole, DHI and 5,6-dihydroxyindole-2 carboxylic acid, DHICA) in aqueous media containing GL layers. The new material featured promising biocompatibility and an increased conductivity with respect to eumelanin by four orders of magnitude.
机译:有机(生物)电子似乎是在Eumelanins(黑色不溶性光保护性人类生物聚合物)的材料科学中进行竞争性开发的第一个目标。但是,这些颜料的低电导率限制了基于Eumelanin的设备的实施。在这里,我们通过在EUmelanin颜料(EU)中整合导电石墨烯类(GL)层,提出了一种新颖的有机/有机杂化材料(EUGL)。 GL层是通过两步氧化/还原炭黑获得的。 GL层在宽pH范围内的稳定性和自组装趋势使该材料在水性介质中制造杂化材料方面处于领先地位。 EUGL是通过在含有GL层的水性介质中诱导Eumelanin前体(5,6-二羟基吲哚,DHI和5,6-二羟基吲哚-2羧酸,DHICA)的聚合而获得的。这种新材料具有令人期待的生物相容性,并且相对于榄兰素的导电性提高了四个数量级。

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