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Recent Advances in Synthesis, Properties, and Applications of Metal Halide Perovskite Nanocrystals/Polymer Nanocomposites

Shuang LiangSchool of Chemical and Biomolecular Engineering Georgia Institute of Technology Atlanta GA 30332 USAMingyue ZhangSchool of Materials Science and Engineering Georgia Institute of Technology Atlanta GA 30332 USAGill M. BiesoldSchool of Materials Science and Engineering Georgia Institute of Technology Atlanta GA 30332 USAWoosung ChoiSchool of Chemical and Biomolecular Engineering Georgia Institute of Technology Atlanta GA 30332 USAYanjie HeSchool of Materials Science and Engineering Georgia Institute of Technology Atlanta GA 30332 USAZili LiSchool of Materials Science and Engineering Georgia Institute of Technology Atlanta GA 30332 USADingfeng ShenSchool of Materials Science and Engineering Georgia Institute of Technology Atlanta GA 30332 USAZhiqun LinSchool of Materials Science and Engineering Georgia Institute of Technology Atlanta GA 30332 USA
2021en
ABI

Аннотация

Metal halide perovskite nanocrystals (PNCs) have recently garnered tremendous research interest due to their unique optoelectronic properties and promising applications in photovoltaics and optoelectronics. Metal halide PNCs can be combined with polymers to create nanocomposites that carry an array of advantageous characteristics. The polymer matrix can bestow stability, stretchability, and solution-processability while the PNCs maintain their size-, shape- and composition-dependent optoelectronic properties. As such, these nanocomposites possess great promise for next-generation displays, lighting, sensing, biomedical technologies, and energy conversion. The recent advances in metal halide PNC/polymer nanocomposites are summarized here. First, a variety of synthetic strategies for crafting PNC/polymer nanocomposites are discussed. Second, their array of intriguing properties is examined. Third, the broad range of applications of PNC/polymer nanocomposites is highlighted, including light-emitting diodes (LEDs), lasers, and scintillators. Finally, an outlook on future research directions and challenges in this rapidly evolving field are presented.

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