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近年来聚噻吩衍生物作为电子给体材料的异质结薄膜成为国内外研究的热点.讨论了异质结薄膜太阳能电池的工作原理,重点分析了材料、混合比例、制作工艺等对聚噻吩衍生物异质结薄膜太阳能电池性能的影响,并指出了今后聚噻吩衍生物异质结薄膜太阳能电池的发展方向.

Polythiophene derivatives as electron donor materials have become domestic and international research hotspots in recent years.The mechanism of solar cells is discussed.The influence of the material, blending proportion, craft, etc.on the behaviour of solar cells is analyzed.Further direction of polythiophene derivatives of heterojunction solar cells is also presented.

参考文献

[1] 雀部博之.导电高分子材料[M].北京:科学出版社,1989:237-273.
[2] Yu G;Srdanw Grodana;Wang Hailiang.High performance polymer photovoltaic cells and photodetectors[A].,2000
[3] Leising G;Resel R;Neuglbauer H.Special issueproceedings of the international conference on science and technology of synthetic metals[A].,2000
[4] Yu G;Gao J;Hummelen J C et al.Enhanced efficiencies via a network of internal donor-aeceptor heterojunctions[J].Science,1995,270(5243):1789-1791.
[5] Chen TA.;Rieke RD.;Wu XM. .REGIOCONTROLLED SYNTHESIS OF POLY(3-ALKYLTHIOPHENES) MEDIATED BY RIEKE ZINC - THEIR CHARACTERIZATION AND SOLID-STATE PROPERTIES[J].Journal of the American Chemical Society,1995(1):233-244.
[6] Camaioni N;Catellani M;Luzzati S et al.Effect of regioregularity on the photoresponse of Sehottky-type junctions based on poly(3-alkylthiophenes)[J].Synthetic Metals,2001,125(03):313-317.
[7] Wu XM.;Rieke RD.;Chen TA. .A STUDY OF SMALL BAND GAP POLYMERS - HEAD-TO-TAIL REGIOREGULAR POLY[3-(ALKYLTHIO)THIOPHENES] PREPARED BY REGIOSELECTIVE SYNTHESIS USING ACTIVE ZINC[J].Macromolecules,1996(24):7671-7677.
[8] Yang S F;Fan L Z;Yang S H .Langmuir-blodgett films of poly(3-hexylthiophene)doped with the endohedral metallofullerene Dy @ C82:Preparation,characterization,and application in photoelectrochemical cells[J].Journal of Physical Chemistry B,2004,108(14):4394-4404.
[9] D. Gebeyehu;C.J. Brabec;F. Padinger .The interplay of efficiency and morphology in photovoltaic devices based on interpenetrating networks of conjugated polymers with fullerenes[J].Synthetic Metals,2001(1/3):1-9.
[10] Adam P.Smith;Rachel R.Smith;Barney E.Taylor .An Investigation of Poly(thienylene vinylene) in Organic Photovoltaic Devices[J].Chemistry of Materials,2004(23):4687-4692.
[11] Maher A I;Roth H K;Schroedner M et al.The influence of the optoelectronic properties of poly(3-alkyhhiophenes)on the device parameters in flexible polymer solar cells[J].ORGANIC ELECTRONICS,2005,6(02):65-77.
[12] Schilinsky, P;Asawapirom, U;Scherf, U;Biele, M;Brabec, CJ .Influence of the molecular weight of poly(3-hexylthiophene) on the performance of bulk heterojunction solar cells[J].Chemistry of Materials,2005(8):2175-2180.
[13] Al-Ibrahim M;Ambacher O;Sensfuss S;Gobsch G .Effects of solvent and annealing on the improved performance of solar cells based on poly(3-hexylthiophene): Fullerene[J].Applied physics letters,2005(20):1120-1-1120-3-0.
[14] 於黄忠,彭俊彪.热处理对P3HT与PCBM共混体系光电性能的影响[J].物理化学学报,2008(05):905-908.
[15] Marisol R;Kyuangkon K;David L C et al.High-efficiency photovohaic devices based on annealed poly(3-hexylthiophene)and 1-(3-methoxycarbonyl)propyl1-phenyl-(6,6)C61 blends[J].Applied Physics Letters,2005,87(08):083506/1-083506/4.
[16] Yang XN;Loos J;Veenstra SC;Verhees WJH;Wienk MM;Kroon JM;Michels MAJ;Janssen RAJ .Nanoscale morphology of high-performance polymer solar cells[J].Nano letters,2005(4):579-583.
[17] Zhokhavets U;Erb T;Gobsch G;Al-Ibrahim M;Ambacher O .Relation between absorption and crystallinity of poly(3-hexylthiophene)/fullerene films for plastic solar cells[J].Chemical Physics Letters,2006(4-6):347-350.
[18] Gang Li;Vishal Shrotriya;Yan Yao;Yang Yang .Investigation of annealing effects and film thickness dependence of polymer solar cells based on poly(3-hexylthiophene)[J].Journal of Applied Physics,2005(4):043704-1-043704-5-0.
[19] Chu-Jung Ko;Yi-Kai Lin;Fang-Chung Chen;Chi-Wei Chu .Modified buffer layers for polymer photovoltaic devices[J].Applied physics letters,2007(6):063509-1-063509-3-0.
[20] Gur, I;Fromer, NA;Geier, ML;Alivisatos, AP .Air-stable all-inorganic nanocrystal solar cells processed from solution[J].Science,2005(5747):462-465.
[21] Liang ZQ;Dzienis KL;Xu J;Wang Q .Covalent layer-by-layer assembly of conjugated polymers and CdSe nanoparticles: Multilayer structure and photovoltaic properties[J].Advanced functional materials,2006(4):542-548.
[22] Huynh W U;Dittmer J J;Alivisatos A P .Hybrid nanorod-polymer solar cells[J].Science,2002,295(5564):2425-2427.
[23] 刘艳山,王藜,曹镛.CdSe纳米晶/共轭聚合物太阳电池的制备与性能研究[J].高等学校化学学报,2007(03):596-599.
[24] Landi BJ;Castro SL;Ruf HJ;Evans CM;Bailey SG;Raffaelle RP .CdSe quantum dot-single wall carbon nanotube complexes for polymeric solar cells[J].Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion,2005(1/4):733-746.
[25] Gopal K M;Karthik S;Maggie P et al.High efficiency double heterojunction polymer photovoltaic calls using highly ordered TiO2 nanotube arrays[J].Applied Physics Letters,2007,91(15):152111/1-152111/3.
[26] C Y KWONG;W C H CHOY;A B DJURISIC .Poly(3-hexylthiophene):TiO_2 nanocomposites for solar cell applications[J].Nanotechnology,2004(9):1156-1161.
[27] Kim Y G;Walker J;Samuelson L A et al.Efficient light harvesting polymers for nanocrystalline TiO2 photovoltaic cells[J].Nano Letters,2003,3(04):523-525.
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