Choi Yunseok, Han Sangmoon, Park Bo-In, Xu Zhihao, Huang Qingge, Bae Sanggeun, Kim Justin S, Kim Sun Ok, Meng Yuan, Kim Seung-Il, Moon Ji-Yun, Roh Ilpyo, Park Ji-Won, Bae Sang-Hoon
Department of Mechanical Engineering and Materials Science, Washington University in St. Louis, St. Louis, MO, 63130, USA.
Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, MA, 02139, USA.
Nano Converg. 2024 Sep 9;11(1):36. doi: 10.1186/s40580-024-00440-7.
The oxide and halide perovskite materials with a ABX structure exhibit a number of excellent properties, including a high dielectric constant, electrochemical properties, a wide band gap, and a large absorption coefficient. These properties have led to a range of applications, including renewable energy and optoelectronics, where high-performance catalysts are needed. However, it is difficult for a single structure of perovskite alone to simultaneously fulfill the diverse needs of multiple applications, such as high performance and good stability at the same time. Consequently, perovskite nanocomposites have been developed to address the current limitations and enhance their functionality by combining perovskite with two or more materials to create complementary materials. This review paper categorizes perovskite nanocomposites according to their structural composition and outlines their synthesis methodologies, as well as their applications in various fields. These include fuel cells, electrochemical water splitting, CO mitigation, supercapacitors, and optoelectronic devices. Additionally, the review presents a summary of their research status, practical challenges, and future prospects in the fields of renewable energy and electronics.
具有ABX结构的氧化物和卤化物钙钛矿材料展现出许多优异性能,包括高介电常数、电化学性能、宽带隙和大吸收系数。这些性能已带来一系列应用,包括可再生能源和光电子学领域,这些领域需要高性能催化剂。然而,单一结构的钙钛矿很难同时满足多种应用的不同需求,比如同时具备高性能和良好稳定性。因此,已开发出钙钛矿纳米复合材料来解决当前的局限性,并通过将钙钛矿与两种或更多种材料结合以创造互补材料来增强其功能。这篇综述论文根据其结构组成对钙钛矿纳米复合材料进行分类,并概述其合成方法以及它们在各个领域的应用。这些领域包括燃料电池、电化学水分解、一氧化碳减排、超级电容器和光电器件。此外,该综述总结了它们在可再生能源和电子学领域的研究现状、实际挑战及未来前景。