PbS_CdS纳米晶共敏化ZnO纳米线太阳能电池的性能研究.docx
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2014年3月JOURNAL OFSYNTHETICCRYSTALSMarch,2014PbS/CdS纳米晶共敏化ZnO纳米线太阳能电池的性能研究娄慧慧1,2,娄天军1,2,崔晓瑞3,张玉泉1,2,乔梅英1,2(1.河南科技学院化学化工学院,新乡453003;2.新乡市功能有机分子重点实验室,新乡453003;3.陕西师范大学材料科学与工程学院,西安710100)摘要:以Zn(Ac)2·2H2O为原料在强碱性条件下合成一维结构的ZnO纳米线,SEM结果表明合成的纳米线尺寸、 形貌、长径比均一;并以油胺为单一溶剂采用热注射法制备了形貌、尺寸均匀的PbS纳米晶;构建PbS纳米晶敏化ZnO纳米线基太阳能电池,同时为了改善电池的光电转换效率并构建了PbS/CdS纳米晶共敏化电池,并测试了电池的光电流密度-光电压(J-V)曲线以及Nyquist曲线图,结果表明PbS/CdS纳米晶共敏化电池性能明显优于单纯 的PbS纳米晶敏化ZnO纳米线太阳能电池。关键词:PbS/CdS纳米晶;ZnO纳米线;共敏化太阳能电池;转换效率中图分类号:TM914.4文献标识码:A文章编号:1000-985X(2014)03-0614-05PropertiesofPbS/CdSNanocrystallineCo-sensitizedZnONanowiresSolarCellsLOUHui-hui1,2,LOUTian-jun1,2,CUIXiao-rui3,ZHANGYu-quan1,2,QIAOMei-ying1,2(1.CollegeofChemistryandChemicalEngineering,HenanInstituteofScienceandTechnology,Xinxiang453003,China; 2.XinxiangMunicipalKeyLaboratoryofFunctionalOrganicMolecular,Xinxiang453003,China;3.SchoolofMaterialsScienceandEngineering,ShaanxiNormalUniversity,Xi'an710100,China) (Received31October2013,accepted7January2014)Abstract:One-dimensionalZnOnanowiresweresynthesizedfromZn(Ac)2·2H2Oasprecursorinstrongalkalinecondition.SEMresultsshowedthatthesize,shapeandaspectratioofsynthesizednanowiresare uniformed;PbSnanocrystallineswerepreparedbyhotinjectionmorphology,usingoleylamineasthesinglesolvent.ThenPbSnanocrystallinessensitizedZnOnanowiresolarcellswereassembled;PbS/CdSco-sensitizedZnOsolarcellswerebuilttoimprove thephotoelectricconversionefficiency.Photocurrent density-photovoltage(J-V)curvesandtheNyquistdotsweretested.Theresultsshowedthatthe performanceofPbS/CdSnanocrystallinesco-sensitizedZnOnanowiressolarcellsarebetterthanthatofthepurePbSnanocrystallinessensitizedZnOnanowiresolarcells.Keywords:PbS/CdSnanocrystalline;ZnOnanowire;co-sensitizedsolarcell;conversionefficiency1引言太阳能是取之不尽用之不竭的绿色环保能源,是解决人类面临的环境问题和能源问题的理想能源,所以对太阳能的开发和利用越来越受到各国的重视[1-3]。相对于硅太阳电池而言,敏化太阳能电池由于光转换性收稿日期:2013-10-31;修订日期:2014-01-07作者简介:娄慧慧(1986-),女,河南省人,硕士。E-mail:louhuihui@hist.edu.cn通讯作者:娄天军,教授。E-mail:ltjhn@163.com能高、成本廉价及组装简单,近年来受到众多研究者的关注。在敏化电池领域,与传统的有机染料敏化剂相 比,半导体纳
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