首页> 外文会议>International symposia on processing and properties of advanced ceramics and composites >AN ENVIRONMENTALLY-BENIGN ELECTROCHEMICAL METHOD FOR FORMATION OF A CHITOSAN-BASED COATING ON STAINLESS STEEL AS A SUBSTRATE FOR DEPOSITION OF NOBLE METAL NANOPARTICLES
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AN ENVIRONMENTALLY-BENIGN ELECTROCHEMICAL METHOD FOR FORMATION OF A CHITOSAN-BASED COATING ON STAINLESS STEEL AS A SUBSTRATE FOR DEPOSITION OF NOBLE METAL NANOPARTICLES

机译:一种环境良性电化学方法,用于在不锈钢上形成壳聚糖基涂层作为沉积贵金属纳米粒子的基材

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We report on a new method for formation of catalytic nanocomposites surfaces and nanoparticles, with many potential benefits in energy and biomedical applications. This work demonstrates an environmentally-benign process using electrochemistry and post deposition UV irradiation to create a durable, robust layer on a stainless steel (304) electrode surface which serves as a substrate for subsequent deposition of silver nanoparticles. Electron microscopy, vibrational and electron spectroscopies are used to identify the structure and chemistry of the initial chitosan layers, indicating formation of nitro groups through oxidization of a fraction of the amine groups of chitosan which may play a role in enhancing adhesion to the passive film on the stainless steel cathode. By using this surface to synthesize noble metal nanoparticles through a patent pending process which eliminates the use of harsh reducing agents, we propose development of a surface with important functionality for catalytic and biomedical applications.
机译:我们对形成催化纳米复合材料的表面和纳米粒子的新方法报告,在能源和生物医学应用的许多潜在的好处。这项工作表明使用电化学和后沉积UV照射以产生在其上用作银纳米颗粒的后续沉积的基板的不锈钢(304)电极表面的持久,坚固的层的环境友好的过程。电子显微镜,振动和电子光谱被用来识别初始的脱乙酰壳多糖层的结构和化学性质,表明通过壳聚糖的胺基团的一小部分可以在提高密合性的钝化膜上发挥作用的氧化形成硝基的不锈钢阴极。通过使用这种表面通过正在申请专利的过程,消除恶劣的使用还原剂的合成贵金属纳米粒子,我们提出用催化和生物医学应用的重要功能表面的发展。

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