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A review of geometry-confined perovskite morphologies:From synthesis to efficient optoelectronic applications

查看全文 作  者:Jinshuai [1]Zhang;Perry Ping [2]Shum;Lei [1]Su 高影响力作者 机构地区:[1]School of Engineering and Materials Science,Queen Mary University of London,London E14NS,UK;[2]College of Engineering,Department of Electrical and Electronic Engineering,Southern University of Science and Technology,Shenzhen 518055,China高影响力机构 出  处:《Nano Research》索引2022年第15卷第8期,共30页高影响力期刊 基  金:L.S.gratefully acknowledges the financial support from the Engineering and Physical Sciences Research Council(Nos.EP/L022559/1,EP/L022559/2,EP/V050311/1,and EP/W004399/1);Royal Society(Nos.RG130230 and IE161214);H2020 Marie Skłodowska-Curie Actions(No.790666);J.S.Z.was supported by a PhD Studentship provided by Queen Mary University of London and China Scholarship Council(CSC). 摘  要:With the continuous study of metal halide perovskite,geometry-confined technologies have been widely applied to reduce the material dimensionality and to produce pre-designed structures,which can tune optical reflectance,scattering,and absorption,thereby optimizing the performance of perovskite-based optoelectronic devices and improving their commercial competitiveness.The morphologies of perovskite active layer play a pivotal role in optoelectronic properties and the resulting device performances.In this review,we systematically summarized recent progress in the preparation and manufacture of various perovskite geometry-confined morphologies,as well as their promising advances in different optoelectronic applications,including photodetectors,solar cells(SCs),lasers,and light-emitting diodes(LEDs).In addition,the remaining challenges and further improvements of preparation unique geometry-confined perovskite morphologies for next-generation high quality optoelectronic devices are discussed. 关 键 词:geometry confinement metal halide perovskite controllable morphology OPTOELECTRONICS
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