中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Hybrid bulk heterojunction solar cells from a blend of poly(3-hexylthiophene) and TiO2 nanotubes

文献类型:期刊论文

作者Wang, ZJ ; Qu, SC ; Zeng, XB ; Liu, JP ; Zhang, CS ; Tan, FR ; Jin, L ; Wang, ZG
刊名applied surface science
出版日期2008
卷号255期号:5页码:1916-1920 part 1
关键词Bulk heterojunction Solar cells TiO2 nanotubes Dye sensitized TiO2 nanotubes Organic/inorganic hybrid
ISSN号0169-4332
通讯作者qu, sc, chinese acad sci, inst semicond, key lab semicond mat sci, pob 912, beijing 100083, peoples r china. 电子邮箱地址: qsc@semi.ac.cn
中文摘要hybrid bulk heterojunction solar cells based on blend of poly(3-hexylthiophene) (p3ht) and tio2 nanotubes or dye(n719) modified tio2 nanotubes were processed from solution and characterized to research the nature of organic/inorganic hybrid materials. compared with the pristine polymer p3ht and tio2 nanoparticles/p3ht solar cells, the tio2 nanotubes/p3ht hybrid solar cells show obvious performance improvement, due to the formation of the bulk heterojunction and charge transport improvement. a further improvement in the device performance can be achieved by modifying tio2 nanotube surface with a standard dye n719 which can play a role in the improvement of both the light absorption and charge dissociation. compared with the non-modified tio2 nanotubes solar cells, the modified ones have better power conversion efficiency under 100 mw/cm(2) illumination with 500w xenon lamp. (c) 2008 elsevier b. v. all rights reserved.
英文摘要hybrid bulk heterojunction solar cells based on blend of poly(3-hexylthiophene) (p3ht) and tio2 nanotubes or dye(n719) modified tio2 nanotubes were processed from solution and characterized to research the nature of organic/inorganic hybrid materials. compared with the pristine polymer p3ht and tio2 nanoparticles/p3ht solar cells, the tio2 nanotubes/p3ht hybrid solar cells show obvious performance improvement, due to the formation of the bulk heterojunction and charge transport improvement. a further improvement in the device performance can be achieved by modifying tio2 nanotube surface with a standard dye n719 which can play a role in the improvement of both the light absorption and charge dissociation. compared with the non-modified tio2 nanotubes solar cells, the modified ones have better power conversion efficiency under 100 mw/cm(2) illumination with 500w xenon lamp. (c) 2008 elsevier b. v. all rights reserved.; 于批量导入; made available in dspace on 2010-03-08t07:57:16z (gmt). no. of bitstreams: 1 331.pdf: 588587 bytes, checksum: 47fe0da3a48f80bdcef66956d52bf7b3 (md5) previous issue date: 2008; national natural science foundation of china 60736034 60576036national basic research programme of china 2006cb202604 2006cb604904 national high technology research and development program of china 2006aa03z408 this work is supported by the national natural science foundation of china with contract nos. 60736034 and 60576036, the national basic research programme of china with contract nos. 2006cb202604 and 2006cb604904, and the national high technology research and development program of china with contract nos. 2006aa03z408.; [wang, z. j.; qu, s. c.; zeng, x. b.; zhang, c. s.; tan, f. r.; jin, l.; wang, z. g.] chinese acad sci, inst semicond, key lab semicond mat sci, beijing 100083, peoples r china; [liu, j. p.] peking univ, coll chem & mol engn, beijing 100871, peoples r china
学科主题半导体化学
收录类别SCI
资助信息national natural science foundation of china 60736034 60576036national basic research programme of china 2006cb202604 2006cb604904 national high technology research and development program of china 2006aa03z408 this work is supported by the national natural science foundation of china with contract nos. 60736034 and 60576036, the national basic research programme of china with contract nos. 2006cb202604 and 2006cb604904, and the national high technology research and development program of china with contract nos. 2006aa03z408.
语种英语
公开日期2010-03-08 ; 2010-10-15
源URL[http://ir.semi.ac.cn/handle/172111/6344]  
专题半导体研究所_中国科学院半导体研究所(2009年前)
推荐引用方式
GB/T 7714
Wang, ZJ,Qu, SC,Zeng, XB,et al. Hybrid bulk heterojunction solar cells from a blend of poly(3-hexylthiophene) and TiO2 nanotubes[J]. applied surface science,2008,255(5):1916-1920 part 1.
APA Wang, ZJ.,Qu, SC.,Zeng, XB.,Liu, JP.,Zhang, CS.,...&Wang, ZG.(2008).Hybrid bulk heterojunction solar cells from a blend of poly(3-hexylthiophene) and TiO2 nanotubes.applied surface science,255(5),1916-1920 part 1.
MLA Wang, ZJ,et al."Hybrid bulk heterojunction solar cells from a blend of poly(3-hexylthiophene) and TiO2 nanotubes".applied surface science 255.5(2008):1916-1920 part 1.

入库方式: OAI收割

来源:半导体研究所

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