KESTERITE

作品数:27被引量:33H指数:4
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相关领域:电气工程理学更多>>
相关作者:檀满林陈时友武莉石将建李冬梅更多>>
相关机构:华东师范大学国际商业机器公司清华大学研究院中国科学院更多>>
相关期刊:《Chinese Physics B》《Clean Energy》《Science China Chemistry》《Carbon Energy》更多>>
相关基金:国家自然科学基金高等学校学科创新引智计划天津市自然科学基金更多>>
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Potassium doping for grain boundary passivation and defect suppression enables highly-efficient kesterite solar cells
《Chinese Chemical Letters》2024年第11期565-570,共6页Yingfen Li Zhiqi Wang Yunhai Zhao Dajun Luo Xueliang Zhang Jun Zhao Zhenghua Su Shuo Chen Guangxing Liang 
supported by the National Natural Science Foundation of China(No.62074102);Science and Technology Plan Project of Shenzhen(No.20220808165025003)China;Science and Technology Project of Guizhou Province(No.QKHJCZK[2023]YB130);The Growth Plan for Young Science and Technology Talents of Guizhou Education Department(No.QJH KY[2017]223)。
The complicated and diverse deep defects,voids,and grain boundary in the CZTSSe absorber are the main reasons for carrier recombination and efficiency degradation.The further improvement of the open-circuit voltage an...
关键词:KESTERITE Solar cell Chemical doping DEFECT Efficiency 
Impact of oxygen incorporation on interface optimization and defect suppression for efficiency enhancement in Cu_(2)ZnSn(S,Se)_(4)solar cells
《Journal of Energy Chemistry》2024年第8期77-85,I0003,共10页Shicheng Deng Songfan Wang Yuanyuan Wang Qian Xiao Yuena Meng Dongxing Kou Wenhui Zhou Zhengji Zhou Zhi Zheng Sixin Wu 
supported by the National Natural Science Foundation of China(62074052,61974173,52072327);the Joint Talent Cultivation Funds of NSFC-HN(U1904192);the Science and Technology Innovation Talents in Universities of Henan Province(21HASTIT023)。
Kesterite Cu_(2)ZnSn(S,Se)_(4)(CZTSSe)solar cells suffer from severe carrier recombination,limiting the photovoltaic performance.Unfavorable energy band alignment at the p-n junction and defective front interface are ...
关键词:KESTERITE Thin film solar cell Interface optimization Surface oxidation Defect suppression 
A review of recent advances of kesterite thin films based on magnesium,iron and nickel for photovoltaic application:insights into synthesis,characterization and optoelectronic properties
《Clean Energy》2024年第2期217-238,共22页Nelson Mauricio Espinel Pérez Enrique Vera López Jairo Alberto Gómez Cuaspud Juan Bautista Carda Castelló 
This review emphasizes the recent advancements and prospects of thin-film kesterite-based photovoltaic(PV)applications using magnesium,iron and nickel.The quest for novel materials employed in solar cells has resulted...
关键词:KESTERITE thin film MAGNESIUM IRON NICKEL substitutes or modifiers novel materials sustainability 
Single-phase evolution path to new record efficiency of kesterite solar cells
《Science China Chemistry》2024年第2期420-421,共2页Yixiong Ji Fangyang Liu 
Over the past few years, there have been significant advancements in uncovering previously sealed records in the kesterite solar cell. This also has led to substantial growth marked by multiple groups achieving succes...
关键词:BREAKTHROUGH sealed successive 
Emergence of flexible kesterite solar cells:progress and perspectives
《npj Flexible Electronics》2023年第1期398-412,共15页Jianjun Li Kaiwen Sun Xiaojie Yuan Jialiang Huang Martin A.Green Xiaojing Hao 
J.L.,K.S.J.H.,X.H.,and M.A.G.acknowledge the financial support of the Australian government through the Australian Renewable Energy Agency(ARENA)(grant number 2017/RND006);Baosteel(grant number LP150100911);X.H.acknowledges the financial support of the Australian Research Council(ARC)Future Fellowship(FT190100756);J.L.and K.S.acknowledges the support from Australian Centre of Advanced Photovoltaics(ACAP,RG200768-A and RG172864-B,respectively);Responsibility for the views,information,or advice expressed herein is not accepted by the Australian government.
Flexible photovoltaics have been and will be increasingly in demand in modern and future society in various applications.Searching for ideal flexible photovoltaic technologies that can perfectly meet these expanding d...
关键词:finally COMPETITIVE FLEXIBLE 
From kesterite 2D nanosheets to wurtzite 1D nanorods:controllable synthesis of Cu-Zn-Sn-S and their application in electrocatalytic hydrogen evolution被引量:1
《Journal of Semiconductors》2023年第12期104-110,共7页Yu Li Shuaibing Wang Jie Chen Ouyang Lin Zhe Yin Chunhe Yang Aiwei Tang 
partially supported by National Natural Science Foundation of China (12274021 and 62075005)。
As typical quarternary copper-based chalcogenides,Cu–Zn–Sn–S nanocrystals(CZTS NCs)have emerged as a newfashioned electrocatalyst in hydrogen evolution reactions(HERs).Oleylamine(OM),a reducing surfactant and solve...
关键词:2D nanosheets 1D nanorods structure evolution Cu-Zn-Sn-S electrocatalytic hydrogen evolution 
Self-powered broadband kesterite photodetector with ultrahigh specific detectivity for weak light applications
《SusMat》2023年第5期682-696,共15页Guang-Xing Liang Chuan-Hao Li Jun Zhao Yi Fu Zi-Xuan Yu Zhuang-Hao Zheng Zheng-Hua Su Ping Fan Xiang-Hua Zhang Jing-Ting Luo Liming Ding Shuo Chen 
National Natural Science Foundation of China,Grant/Award Numbers:62074102,62104156,21961160720;Open Research Fund of Songshan Lake Materials Laboratory,Grant/Award Number:2021SLABFK02;Guangdong Basic and Applied Basic Research Foundation,Grant/Award Numbers:2022A1515010979,2023A1515011256;Science and Technology Plan Project of Shenzhen,Grant/Award。
Kesterite Cu_(2)ZnSn(S,Se)_(4)(CZTSSe)is a promising candidate for photodetector(PD)applications thanks to its excellent optoelectronic properties.In this work,a green solution-processed spin coating and selenization-...
关键词:DETECTIVITY KESTERITE PHOTODETECTOR thin film weak light detection 
Identifying the relationships between subsurface absorber defects and the characteristics of kesterite solar cells
《Carbon Energy》2023年第8期42-54,共13页Dae-Ho Son Dong-Hwan Jeon Dae-Hwan Kim Jin-Kyu Kang Shi-Joon Sung Jaebaek Lee Taeseon Lee Enkhjargal Enkhbayar JunHo Kim Kee-Jeong Yang 
the National Research Foundation of Korea(NRF)grant funded by the Ministry of Science and ICT(No.2022M3J1A1085371);the DGIST R&D programs of the Ministry of Science and ICT(23-ET-08 and 23-CoE-ET-01);the National Research Foundation of Korea(NRF),funded by the Korean Government(NRF-2021R1A2C1008598).
Understanding the defect characteristics that occur near the space-charge regions(SCRs)of kesterite(CZTSSe)solar cells is important because the recombination loss at the CZTSSe/CdS interface is considered the main cau...
关键词:defect density defect energy level elemental variation KESTERITE space charge region 
Recent progress in defect engineering for kesterite solar cells
《Science China(Physics,Mechanics & Astronomy)》2023年第1期18-33,共16页Kaiwen Sun Jialiang Huang Jianjun Li Chang Yan Xiaojing Hao 
supported by the Australian Renewable Energy Agency(Grant Nos.1-USO028,and 2017/RND006);the Australian Research Council(ARC)Future Fellowship Programme(Grant No.FT190100756);the ACAP Postdoctoral Fellowship Supported by Australian Centre for Advanced Photovoltaics(Grant No.1-SRI001)。
Kesterite Cu_(2)ZnSn(S,Se)_(4)(CZTSSe)thin film solar cells have been regarded as one of the most promising thin film photovoltaic technologies,offering a low-cost and environmentally friendly solar energy option.Alth...
关键词:thin film solar cells kesterite solar cells Cu_(2)ZnSn(S Se)_(4)(CZTSSe CZTS) defect engineering 
Over 12%efficient kesterite solar cell via back interface engineering被引量:2
《Journal of Energy Chemistry》2022年第12期321-329,I0008,共10页Yunhai Zhao Zixuan Yu Juguang Hu Zhuanghao Zheng Hongli Ma Kaiwen Sun Xiaojing Hao Guangxing Liang Ping Fan Xianghua Zhang Zhenghua Su 
supported by the National Key R&D Program of China(no.2018YFE0203400);the National Natural Science Foundation of China(no.62074102);the Guangdong Basic and Applied Basic Research Foundation(no.2022A1515010979);the Science and Technology plan project of Shenzhen(nos.JCYJ20190808120001755 and 20220808165025003)。
Kesterite Cu_(2)ZnSn(S,Se)_(4)(CZTSSe)has attracted considerable attention as a non-toxic and earthabundant solar cell material.During selenization of CZTSSe film at high temperature,the reaction between CZTSSe and Mo...
关键词:Cu_(2)ZnSn(S Se)_(4) WO_(3)intermediate layer Crystal growth Minority carrier diffusion length Interface contact quality 
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