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首页> 外文期刊>Journal of the European Ceramic Society >Semiconductor water-based inks: Miniaturized NiO pseudocapacitor electrodes by inkjet printing
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Semiconductor water-based inks: Miniaturized NiO pseudocapacitor electrodes by inkjet printing

机译:半导体水性油墨:喷墨印刷小型NIO假涂料电极

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摘要

The formulation, development and optimization of water-based inks of platelet-like nanoparticles are the main objective of this work. As-synthesized Ni(OH)(2) nanoparticles were dispersed and stabilized in aqueous suspension by PEI addition. The combination of DEG (cosolvent) with H2O shows the ideal values of surface tension and viscosity for piezoelectric inkjet printing, which exhibits a homogeneous jetting flow of the nanoplatelets suspension. The printed nanostructure was sintered at low temperature (325 degrees C) and the electrochemical overview of NiO electrode behavior was described. These printable pseudocapacitors tested by a three-electrode cell have showed a competitive specific capacitance, leading 92% and 78% of capacitance retention for 2000 cycles at scan rates of 1 and 2 A/g respectively, and a coulombic efficiency of 100%. The initial performance of this printed NiO pseudocapacitor can be compared with others prepared by conventional methods. This new finding is expected to be particularly useful for the designing of micro-pseudocapacitors.
机译:血小板样纳米粒子的水性油墨的配方,开发和优化是这项工作的主要目的。通过PEI加入将如合成的Ni(OH)(2)纳米颗粒分散并稳定在水性悬浮液中。 DEG(COSOLVETER)的组合与H2O表示压电喷墨印刷的表面张力和粘度的理想值,这表现出纳米片悬浮液的均匀喷射流动。在低温(325℃)下印刷的纳米结构烧结,并描述了NiO电极行为的电化学概述。由三电极电池测试的这些可印刷的假偶联器已经显示出竞争的特定电容,引导92%和78%的电容保留2000次循环,分别为1和2 A / G的扫描速率,以及100%的库仑效率。可以将该印刷的NIO假偶联机的初始性能与通过常规方法制备的其它性能进行比较。这一新发现预计对微假伪熟炉的设计特别有用。

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