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Biomemristic Behavior for Water-Soluble Chitosan Blended with Graphene Quantum Dot Nanocomposite

机译:水溶性壳聚糖与石墨烯量子点纳米复合材料共混的生物力学行为

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摘要

Bionanocomposite has promising biomemristic behaviors for data storage inspired by a natural biomaterial matrix. Carboxylated chitosan (CCS), a water-soluble derivative of chitosan avoiding the acidic salt removal, has better biodegradability and bioactivity, and is able to absorb graphene quantum dots (GQDs) employed as charge-trapping centers. In this investigation, biomemristic devices based on water-soluble CCS:GQDs nanocomposites were successfully achieved with the aid of the spin-casting method. The promotion of binary biomemristic behaviors for Ni/CCS:GQDs/indium-tin-oxide (ITO) was evaluated for distinct weight ratios of the chemical components. Fourier transform infrared spectroscopy, Raman spectroscopy (temperature dependence), thermogravimetric analyses and scanning electron microscopy were performed to assess the nature of the CCS:GQDs nanocomposites. The fitting curves on the experimental data further confirmed that the conduction mechanism might be attributed to charge trapping–detrapping in the CCS:GQDs nanocomposite film. Advances in water-soluble CCS-based electronic devices would open new avenues in the biocompatibility and integration of high-performance biointegrated electronics.
机译:Bionanocomposite在自然生物材料基质的启发下,具有广阔的生物记忆行为,可用于数据存储。羧化壳聚糖(CCS)是一种壳聚糖的水溶性衍生物,可避免去除酸性盐,具有更好的生物降解性和生物活性,并能够吸收用作电荷捕获中心的石墨烯量子点(GQD)。在这项研究中,借助旋转浇铸法成功地实现了基于水溶性CCS:GQDs纳米复合材料的生物记忆器件。针对化学成分的不同重量比,评估了Ni / CCS:GQDs /铟锡氧化物(ITO)的二元生物记忆行为的促进作用。进行了傅里叶变换红外光谱,拉曼光谱(温度依赖性),热重分析和扫描电子显微镜以评估CCS:GQDs纳米复合材料的性质。实验数据的拟合曲线进一步证实,传导机制可能归因于CCS:GQDs纳米复合膜中的电荷俘获-去俘获。水溶性基于CCS的电子设备的进步将为高性能生物集成电子产品的生物相容性和集成开辟新途径。

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