Advanced energy storage with lanthanum-based materials

Vinitha Packirisamy , M.V. Arularasu , Periasamy Anbu , Rajabhuvaneswari Ariyamthu
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引用次数: 0

Abstract

Lanthanum, a rare earth element, possesses remarkable electrochemical properties, including increased ionic conductivity, thermal stability, and redox activity. These qualities make it an attractive candidate for improving the efficiency of energy storage systems. This review discusses the potential of lanthanum-based materials in recent energy storage systems, specifically highlighting their distinct features and their usage in various storage technologies. The review highlights the fabrication, electrochemical activity, and applications of lanthanum-based oxides, hydroxides, hydrides, perovskites, and intermetallic compounds in energy storage devices. This review explores the significant progress in integrating lanthanum into cathodes, anodes, and electrolytes, focusing on improvements in energy density, cycle life, stability, and efficiency. The review ends by highlighting the potential advancements that might facilitate the incorporation of lanthanum-based materials into advanced energy storage systems for commercial purposes.
基于镧基材料的先进储能技术
镧是一种稀土元素,具有显著的电化学性能,包括提高离子电导率,热稳定性和氧化还原活性。这些特性使其成为提高储能系统效率的有吸引力的候选者。本文讨论了镧基材料在最近的储能系统中的潜力,特别强调了它们的独特特性及其在各种储能技术中的应用。综述了镧基氧化物、氢氧化物、氢化物、钙钛矿和金属间化合物的制备、电化学活性和在储能装置中的应用。本文综述了将镧集成到阴极、阳极和电解质中的重大进展,重点是提高能量密度、循环寿命、稳定性和效率。该综述最后强调了潜在的进步,这些进步可能有助于将镧基材料纳入先进的商业储能系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
2.70
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0.00%
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