首页> 外文OA文献 >Nanostructured electrochemical devices for sensing, energy conversion and storage
【2h】

Nanostructured electrochemical devices for sensing, energy conversion and storage

机译:用于传感,能量转换和存储的纳米结构电化学装置

摘要

Nanostructured materials are attracting growing interest for improving performance of devices and systems of large technological interest. In this work, the principal results about the use of nanostructured materials in the field of electrochemical energy storage, electrochemical water splitting, and electrochemical sensing are presented. Nanostructures were fabricated with two different techniques. One of these was the electrodeposition of the desired material inside the channels of a porous support acting as template. The other one was based on displacement reaction induced by galvanic contact between metals with different electrochemical nobility. In the present work, a commercial polycarbonate membrane was used as template. In the field of the electrochemical energy storage, the attention was focused on lead-acid battery, and it has been found that nanostructured morphology enhances the active mass utilization up to about 80%, with consequent increase of specific energy and cycling rates to unattainable values for the commercial battery. Nanostructured Ni-IrO2 composite electrodes showed valuable catalytic activity for water oxidation. By comparison with other Ni-based electrocatalyst, this electrode appears as the most promising anode for electrochemical water splitting in alkaline cells. Also in the field of sensing, the nanostructured materials fabricated by displacement reaction showed performance of high interest. Some new results about the use of copper nanowires for H2O22 sensing will be showed, evidencing better performance in comparison with copper thin film. In this work, we will show that nanostructured electrodes are very promising candidate to form different electrochemical setups that operate more efficiently comparing to device with flat electrode materials.
机译:纳米结构材料对于提高具有重大技术意义的设备和系统的性能引起了越来越多的兴趣。在这项工作中,提出了有关在电化学能量存储,电化学水分解和电化学传感领域中使用纳米结构材料的主要结果。纳米结构是用两种不同的技术制造的。其中之一是将所需材料电沉积在用作模板的多孔载体的通道内。另一种是基于具有不同电化学贵金属的金属之间的电流接触引起的置换反应。在目前的工作中,将商用聚碳酸酯膜用作模板。在电化学储能领域,注意力集中在铅酸电池上,发现纳米结构形态可将活性物质利用率提高至约80%,从而将比能和循环速率提高至无法达到的值用于商用电池。纳米结构的Ni-IrO2复合电极对水氧化具有重要的催化活性。与其他镍基电催化剂相比,该电极似乎是碱性电池中电化学水分解的最有希望的阳极。同样在传感领域中,通过置换反应制备的纳米结构材料表现出很高的兴趣。将显示有关使用铜纳米线进行H2O22感测的一些新结果,与铜薄膜相比,其表现出更好的性能。在这项工作中,我们将显示纳米结构电极非常有可能成为形成不同电化学装置的候选材料,与使用扁平电极材料的装置相比,这些电化学装置可以更有效地运行。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号