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真黑素薄膜:溶液处理、生长及电荷传输特性

Eumelanin thin films: solution-processing, growth, and charge transport properties.

作者信息

Wünsche Julia, Cicoira Fabio, Graeff Carlos F O, Santato Clara

机构信息

Département de génie physique, École Polytechnique de Montréal, CP 6079, Succursale Centre-Ville, Montréal, Québec H3C 3A7, Canada.

出版信息

J Mater Chem B. 2013 Aug 21;1(31):3836-3842. doi: 10.1039/c3tb20630k. Epub 2013 Jul 2.

DOI:10.1039/c3tb20630k
PMID:32261137
Abstract

Eumelanin pigments show hydration-dependent conductivity, broad-band UV-vis absorption, and chelation of metal ions. Solution-processing of synthetic eumelanins opens new possibilities for the characterization of eumelanin in thin film form and its integration into bioelectronic devices. We investigate the effect of different synthesis routes and processing solvents on the growth, the morphology, and the chemical composition of eumelanin thin films using atomic force microscopy and X-ray photoelectron spectroscopy. We further characterize the films by transient electrical current measurements obtained at 50% to 90% relative humidity, relevant for bioelectronic applications. We show that the use of dimethyl sulfoxide is preferable over ammonia solution as processing solvent, yielding homogeneous films with surface roughnesses below 0.5 nm and a chemical composition in agreement with the eumelanin molecular structure. These eumelanin films grow in a quasi layer-by-layer mode, each layer being composed of nanoaggregates, 1-2 nm high, 10-30 nm large. The transient electrical measurements using a planar two-electrode device suggest that there are two contributions to the current, electronic and ionic, the latter being increasingly dominant at higher hydration, and point to the importance of time-dependent electrical characterization of eumelanin films.

摘要

真黑素色素具有水合依赖性导电性、宽带紫外可见吸收以及金属离子螯合作用。合成真黑素的溶液加工为以薄膜形式表征真黑素及其集成到生物电子器件中开辟了新的可能性。我们使用原子力显微镜和X射线光电子能谱研究了不同合成路线和加工溶剂对真黑素薄膜的生长、形态和化学成分的影响。我们通过在50%至90%相对湿度下进行的瞬态电流测量进一步表征这些薄膜,这与生物电子应用相关。我们表明,使用二甲基亚砜作为加工溶剂优于氨溶液,可得到表面粗糙度低于0.5 nm且化学成分与真黑素分子结构一致的均匀薄膜。这些真黑素薄膜以准逐层模式生长,每层由高度为1 - 2 nm、大小为10 - 30 nm的纳米聚集体组成。使用平面双电极器件进行的瞬态电学测量表明,电流有两种贡献,电子和离子贡献,后者在更高水合度下越来越占主导地位,并指出了对真黑素薄膜进行时间相关电学表征的重要性。

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