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Modulating charge carriers in carbon dots toward efficient solar-to-energy conversion

查看全文 作  者:Namhee [1]Kim;Jiyoung [1]Lee;Minsu [2]Gu;Byeong-Su [1]Kim 高影响力作者 机构地区:[1]Department of Chemistry,Yonsei University,Seoul,Republic of Korea;[2]Department of Chemical Engineering(BK21 FOUR),Dong-A University,Busan,Republic of Korea高影响力机构 出  处:《Carbon Energy》索引2021年第3卷第4期,共25页高影响力期刊 基  金:National Research Foundation of Korea,Grant/Award Numbers:NRF-2017M3A7B4052802,NRF-2018R1A5A1025208。 摘  要:Growing attention to the development of sustainable solar-to-energy conversion applications has resulted in the synthesis of promising and environment-friendly nanomaterials as energy harvesters.Among various carbon nanomaterials,carbon dots(CDs)have received significant attention due to their excellent light absorption capability,broad absorption region,and superior photostability with enormous potential for solar energy applications.Therefore,utilizing and modulating the charge carriers generated from CDs is critical for achieving a high energy conversion efficiency of CDs.Herein,we focus on the distinct characteristics of CDs as energy converters from charge excitation to charge separation and transfer for various solar-to-energy applications,including photovoltaic cells,photocatalysts,and photoelectrocatalysts.We anticipate that this review will offer insight into the synthesis and design of novel nanocomposites with a fundamental analysis of the photochemical properties and future development of energy conversion devices. 关 键 词:carbon dots charge carrier energy conversion PHOTOCATALYST photoelectrocatalyst
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