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Perovskite nanocomposites: synthesis, properties, and applications from renewable energy to optoelectronics

Author(s)
Choi, Yunseok; Han, Sangmoon; Park, Bo-In; Xu, Zhihao; Huang, Qingge; Bae, Sanggeun; Kim, Justin S.; Kim, Sun O.; Meng, Yuan; Kim, Seung‐Il; Moon, Ji‐Yun; Roh, Ilpyo; Park, Ji-Won; Bae, Sang‑Hoon; ... Show more Show less
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Abstract
The oxide and halide perovskite materials with a ABX3 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, CO2 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.
Date issued
2024-09-09
URI
https://hdl.handle.net/1721.1/156881
Department
Massachusetts Institute of Technology. Department of Mechanical Engineering; Massachusetts Institute of Technology. Research Laboratory of Electronics
Journal
Nano Convergence
Publisher
Springer Nature Singapore
Citation
Choi, Y., Han, S., Park, BI. et al. Perovskite nanocomposites: synthesis, properties, and applications from renewable energy to optoelectronics. Nano Convergence 11, 36 (2024).
Version: Final published version

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