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Electrophoretic deposition in the solid oxide fuel cell technology: Fundamentals and recent advances

机译:固体氧化物燃料电池技术中的电泳沉积:基本原理和最新进展

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摘要

Solid oxide fuel cells (SOFCs) have been attracting considerable attention as prospective power sources with a variety of applications. Much current research is directed towards lowering the SOFC operating temperature in order to reduce the costs related to insulation, materials, start-up and degradation. Development of versatile technologies is required to fabricate a SOFC with a thin-film electrolyte membrane to decrease ohmic losses at reduced temperatures and to form graded electrodes that have superior electrochemical performance. Electrophoretic deposition (EPD) is one of the most technologically flexible and cost-effective methods currently available for the thin film formation. This review briefly highlights the fundamental regularities and mechanisms of EPD and shows the evolution of the mathematical model of EPD considering classical and recent studies in this area. It presents current approaches to overcoming the challenges in the realization of the EPD process such as the choice of dispersion medium and additives, preparation of stable suspensions, bubble-free deposition from aqueous suspensions, formation of substrates with optimized porosity and conductivity and deposition on non-conducting substrates. It also summarizes the latest advances in deposition of different SOFCs' functional layers (dense, porous and multilayered) and entire cell structures, including micro-tubular cells.
机译:固体氧化物燃料电池(SOFC)作为具有多种应用前景的电源已引起了相当大的关注。当前的许多研究都旨在降低SOFC的工作温度,以降低与绝缘,材料,启动和降级有关的成本。需要开发通用技术来制造带有薄膜电解质膜的SOFC,以降低在降低的温度下的欧姆损耗并形成具有优异电化学性能的渐变电极。电泳沉积(EPD)是目前可用于薄膜形成的技术上最灵活,最具成本效益的方法之一。这篇综述简要地强调了EPD的基本规律和机理,并考虑了该领域的经典和最新研究,展示了EPD数学模型的演变。它介绍了克服EPD过程中挑战的当前方法,例如选择分散介质和添加剂,制备稳定的悬浮液,从水性悬浮液中无气泡沉积,形成具有最佳孔隙率和电导率的基材以及在非水上沉积-导电基底。它还总结了不同SOFC功能层(致密,多孔和多层)和整个细胞结构(包括微管细胞)沉积的最新进展。

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