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Eumelanin Graphene-Like Integration: The Impact on Physical Properties and Electrical Conductivity

机译:Eumelanin石墨烯样整合:对物理性质和电导率的影响

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摘要

The recent development of eumelanin pigment-based blends integrating “classical” organic conducting materials is expanding the scope of eumelanin in bioelectronics. Beyond the achievement of high conductivity level, another major goal lays in the knowledge and feasible control of structure/properties relationship. We systematically investigated different hybrid materials prepared by in situ polymerization of the eumelanin precursor 5,6-dihydroxyindole (DHI) in presence of various amounts of graphene-like layers. Spectroscopic studies performed by solid state nuclear magnetic resonance (ss-NMR), x-ray photoemission, and absorption spectroscopies gave a strong indication of the direct impact that the integration of graphene-like layers into the nascent polymerized DHI-based eumelanin has on the structural organization of the pigment itself, while infrared, and photoemission spectroscopies indicated the occurrence of negligible changes as concerns the chemical units. A tighter packing of the constituent units could represent a strong factor responsible for the observed improved electrical conductivity of the hybrid materials, and could be possible exploited as a tool for electrical conductivity tuning.
机译:整合了“经典”有机导电材料的真木素颜料基混合物的最新发展正在扩大真木素在生物电子领域的范围。除了实现高电导率水平外,另一个主要目标在于结构/性能关系的知识和可行控制。我们系统地研究了在各种数量的类石墨烯层存在下通过木兰素前体5,6-二羟基吲哚(DHI)原位聚合制备的不同杂化材料。通过固态核磁共振(ss-NMR),x射线光发射和吸收光谱学进行的光谱研究强烈表明了将石墨烯样层集成到新生的聚合的DHI基Eumelanin中的直接影响。颜料本身的结构组织,而红外光谱和光发射光谱学表明,关于化学单位的变化可忽略不计。组成单元的更紧密堆积可能代表了观察到的杂化材料电导率提高的重要因素,并且有可能被用作电导率调节的工具。

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