全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

低聚合度的交替共聚物太阳能电池的形态和性能

DOI: 10.3724/SP.J.1105.2013.12190, PP. 183-190

Keywords: 有机太阳能电池,三组分共混薄膜,LDP-PCPDTBT,PMMA,1,8-二溴辛烷

Full-Text   Cite this paper   Add to My Lib

Abstract:

制备了由低聚合度的聚[2,6-(4,4-双-(2-乙基己基)-4H-环戊[2,1-b;3,4-b']双噻吩)-交替-4,7-(2,1,3-苯并噻二唑)](LDP-PCPDTBT)、[6,6]-苯基-C61-丁酸甲酯(PC61BM)和聚甲基丙烯酸甲酯(PMMA)组成的三组分共混薄膜,并通过加入溶剂添加剂(1,8-二溴辛烷,DBO)对体系进行了优化处理.研究发现,没有加入DBO时,LDP-PCPDTBT和PC61BM相在PMMA的基质中分别是无定形的和结晶的;加入DBO后,PMMA基质中LDP-PCPDTBT和PC61BM间的相分离过程得到优化,有机太阳能电池的能量转换效率相应提高了32.4%.

References

[1]  1 Yu G,Gao J, Hummelen J C,Wudl F,Heeger A J.Science,1995,270:1789~1791
[2]  2 Hoth C N,Choulis S A,Schilinsky P,Brabec C J.J Mater Chem,2009,19:5398~5404
[3]  4 Kuwabara T,Sugiyama J,Yamaguchi T,Takahashi K.Thin Solid Films,2009,517:3766~3769
[4]  7 Soci C,Hwang I W,Moses D,Zhu Z,Waller D,Gaudiana R,Brabec C J,Heeger A J.Adv Funct Mater,2007,17:632~636
[5]  10 Dennler G,Scharber M C,Ameri T,Denk P,Forberich K,Waldauf C,Brabec C J.Adv Mater,2008,20:579~583
[6]  11 Peet J,Kim J Y,Coates N E,Ma W L,Moses D,Heeger A J,Bazan G C.Nat Mater,2007,6:497~500
[7]  12 Mühlbacher D,Scharber M,Morana M,Zhu Z,Waller D,Gaudiana R,Brabec C.Adv Mater,2006,18:2884~2889
[8]  13 Valenzuela J,Mil’shtein S.Microelectrons J,2009,40:424~426
[9]  14 Hwang I W,Soci C,Moses D,Zhu Z,Waller D,Gaudiana R,Brabec C J,Heeger A J.Adv Mater,2007,19:2307~2312
[10]  15 Padinger F,Rittberger R S,Sariciftci N S.Adv Funct Mater,2003,13:85~88
[11]  16 Quiles M C,Ferenczi T,Agostinelli T,Etchegoin P G,Kim Y,Anthopoulos T D,Stavrinou P N,Bradley D D C,Nelson J.Nat Mater,2008,7:158~164
[12]  21 Chen F C,Ko C J,Wu J L,Chen W C.Sol Energy Mater Sol Cells,2010,94:2426~2430
[13]  22 Pivrikas A,Neugebauer H,Sariciftci N S.Sol Energy,2011,85:1226~1237
[14]  23 Hoven C V,Dang X D,Coffin R C,Peet J,Nguyen T Q,Bazan G C.Adv Mater,2010,22:E63~E66
[15]  25 Lee J K,Ma W L,Brabec C J,Yuen J,Moon J S,Kim J Y,Lee K,Bazan G C,Heeger A J.J Am Chem Soc,2008,130:3619~3623
[16]  26 Liu X L,Huettner S,Rong Z X,Sommer M,Friend R H.Adv Mater,2012,24:669~674
[17]  27 Boland P,Lee K,Namkoong G.Sol Energy Mater Sol Cells,2010,94:915~920
[18]  29 Yang X N,Loos J,Veenstra S C,Verhees W J H,Wienk M M,Kroon J M,Michels M A J,Janssen R A J.Nano Lett,2005,5:579~583
[19]  3 Krebs F C.Sol Energy Mater Sol Cells,2009,93:394~412
[20]  5 Li G,Shrotriya V,Huang J,Yao Y,Moriarty T,Emery K,Yang Y.Nat Mater,2005,4:864~868
[21]  6 Kim Y,Cook S,Tuladhar S M,Choulis S A,Nelson J,Durrant J R,Bradley D D C,Giles M,Mcculloch I,Ha C S,Ree M.Nat Mater,2006,5:197~203
[22]  8 Morana M,Wegscheider M,Bonanni A,Kopidakis N,Shaheen S,Scharber M,Zhu Z,Waller D,Gaudiana R,Brabec C.Adv Funct Mater,2008,18:1757~1766
[23]  9 Scharber M C,Mühlbacher D,Koppe M,Denk P,Waldauf C,Heeger A J,Brabec C J.Adv Mater,2006,18:789~794
[24]  17 Qin D S,Quan W,Cheng C R,Liu J S,Zhang J D.Semicond Sci Technol,2010,25:095003
[25]  18 Wang T,Pearson A J,Lidzey D G,Jones R A L.Adv Funct Mater,2011,21:1383~1390
[26]  19 Loser S,Bruns C J,Miyauchi H,Ortiz R P,Facchetti A,Stupp S I,Marks T J.J Am Chem Soc,2011,133:8142~8145
[27]  20 Miller S,Fanchini G,Lin Y Y,Li C,Chen C W,Su W F,Chhowalla M.J Mater Chem,2008,18:306~312
[28]  24 Peet J,Heeger A J,Bazen G C.Acc Chem Res,2009,42:1700~1708
[29]  28 Wu M C,Liao H C,Lo H H,Chen S,Lin Y Y,Yen W C,Zeng T W,Chen C W,Chen Y F,Su W F.Sol Energy Mater Sol Cells,2009,93:961~965
[30]  30 Agostinelli T,Ferenczi T A M,Pires E,Foster S,Maurano A,Müller C,Ballantyne A,Hampton M,Lilliu S,Quiles M C,Azimi H,Morana M,Bradley D D C,Durrant J,Macdonald J E,Stingelin N,Nelson J.J Polym Sci Part B:Polym Phys,2011,49:717~724

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133