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Electrostatically Sprayed Nanostructured Electrodes for Energy Conversion and Storage Devices

机译:用于能量转换和存储装置的静电喷射纳米结构电极

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摘要

The electrostatic spray method is a promising nonvacuum technique for efficient deposition of thin films from solutions or dispersions. The multitude of electrostatic spray process parameters, including surface tension, viscosity, and conductivity of the liquid, applied voltage, nozzle size, and flow rate, make electrostatic spray deposition very versatile for the morphological engineering of nanostructured films. The current state-of-the-art in electrostatic spraying can produce exceptional morphologies. Such tailoring of morphologies is notably useful in electrochemical applications where high electrolyte-accessible surface area often improves performance. Interesting morphologies of metal oxides and their composites are highlighted, including nanopillars, nanoferns, and porous microspheres produced by electrostatic spraying to enhance energy conversion and storage performance. The physics associated with the electrostatic spray process and morphology control using it are also presented. The manuscript highlights the potential of electrospray processing for producing thin films of controlled microstructure, from ultrasmooth layers in organic photovoltaics and perovskite photovoltaics to hierarchical nanostructured films for anodes and photoanodes. It aims to help researchers appreciate essential aspects of electrostatic spray deposition efficiency, process control, and morphology engineering for energy conversion (e.g., solar cell, fuel cell, and photoelectrochemical cell) and energy storage (e.g., lithium-ion battery and supercapacitor) electrodes.
机译:静电喷射方法是一种有前途的非撤销技术,用于从溶液或分散体中有效地沉积薄膜。富有静电喷射工艺参数的多个静电喷射,粘度和液体,施加电压,喷嘴尺寸和流速,使静电喷射沉积非常通用纳米结构薄膜的形态学工程。静电喷涂目前的最先进可以产生出色的形态。这种形态剪裁在电化学应用中具有显着的可用于高电解质可接近的表面积通常改善性能的电化学应用。金属氧化物及其复合材料的有趣形态被突出,包括通过静电喷涂产生的纳米铝串,纳米植物和多孔微球,以提高能量转换和储存性能。还提出了与静电喷射过程和使用它相关的物理学。该原稿突出了电喷雾处理的电位,用于产生控制微观结构的薄膜,从有机光伏和钙钛矿光伏的超高频层到阳极和光阳极的分层纳米结构薄膜。它旨在帮助研究人员欣赏静电喷射沉积效率,过程控制和形态学工程的基本方面,用于能量转换(例如,太阳能电池,燃料电池和光电化学电池)和能量存储(例如,锂离子电池和超级电池)电极。

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