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窄带隙共轭聚合物材料是新型太阳能电池的研究热点.按窄带隙聚合物材料的结构分类,简要总结了不同种类窄带隙共轭聚合物类太阳能电池材料的设计、合成及器件性能,并指出了该研究领域目前还存在的问题和今后发展的方向.

参考文献

[1] 赵玉文.太阳电池新进展[J].物理,2004(02):99-105.
[2] Goetzberger A.;Hebling C.;Schock HW. .Photovoltaic materials, history, status and outlook [Review][J].Materials Science & Engineering, R. Reports: A Review Journal,2003(1):1-46.
[3] Irwin M D;Buchholz B;Hains A W et al.p-type serniconducting nickel oxide as an efficiency-enhancing anode interfacial layer in polymer bulk-heterojunetion solar cells[J].Proceedings of the National Academy of Sciences(USA),2008,105:2783.
[4] Kroon R;Lenes M;Hummelen JC;Blom PWM;De Boer B .Small bandgap polymers for organic solar cells (polymer material development in the last 5 years)[J].Polymer reviews,2008(3):531-582.
[5] MeCullough R D et al.Design,synthesis,and control of conducting polymer architectures.,structurally homogeneous poly(3-alkylthiophenes)[J].Journal of Organic Chemistry,1993,58:904.
[6] Chen T A;Reike R D .The first regioregular head-to-tail poly(3-hexylthiophene-2,5-diyl) and a regiorandom isopolymer:Nickel versus palladium catalysis of 2(5)-bromo-5(2)-(bromozincio)-3-hexyhhiophene polymerization[J].Journal of the American Chemical Society,1992,114:10087.
[7] Seamus A Curran;Pulickel M Ajayan et al.A composite from poly (m-phenylenevinylene-co-2,5-dioetoxy-p-phenylenevinylene) and carbon nanotubes:A novel material for molecular optoelectronies[J].Advanced Materials,1998,10:93.
[8] 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.
[9] Krebs FC;Biancardo M .Dye sensitized photovoltaic cells: Attaching conjugated polymers to zwitterionic ruthenium dyes[J].Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion,2006(2):142-165.
[10] Iraqi A.;Barker GW. .Synthesis and characterisation of telechelic regioregular head-to-tail poly(3-alkylthiophenes)[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,1998(1):25-29.
[11] Zhang Q T;Tour J M .Low optical bandgap polythiophenes by an alternating donor/acceptor repeat unit strategy[J].Journal of the American Chemical Society,1997,119:5065.
[12] Reyes-Reyes M;Kim K;Dewald J;Lopez-Sandoval R;Avadhanula A;Curran S;Carroll DL .Meso-structure formation for enhanced organic photovoltaic cells[J].Organic letters,2005(26):5749-5752.
[13] 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.
[14] Sun S S;Sariciftci N S.Organic photvoltaics-mechanisms,materials[M].Boca Raton:Devices,CRC Press,2005
[15] Zhou Y;Yuan Y;Cao L et al.Improved stability of OLEDs with mild oxygen plasma treated PEDOT:PSS[J].Journal of Luminescence,2007,122:602.
[16] Fengling Zhang;Mikael Johansson;Mats R. Andersson;Jan C. Hummelen;Olle Inganas .Polymer Photovoltaic Cells with Conducting Polymer Anodes[J].Advanced Materials,2002(9):662-665.
[17] Granstrom M;Berggren M;Inganas O .MICROMETER- AND NANOMETER-SIZED POLYMERIC LIGHT-EMITTING DIODES[J].Science,1995(5203):1479-1481.
[18] Arias A C;Granstrom M et al.Organic photodiodes using polymeric anodes[J].Synthetic Metals,1999,102:953.
[19] Wang C S;Kilitziraki M;Palsson L O et al.Polymeric alkoxy PBD[2-(4-biphenylyl)-5-phenyl-1,3,4-oxadiazole]for light-emitting diodes[J].Advanced Functional Materials,2001,11:47.
[20] Raimundo JM.;Blanchard P.;Gallego-Planas N.;Mercier N.;Ledoux-Rak I. Hierle R.;Roncali J. .Design and synthesis of push-pull chromophores for second-order nonlinear optics derived from rigidified thiophene-based pi-conjugating spacers[J].The Journal of Organic Chemistry,2002(1):205-218.
[21] Gunbas GE;Durmus A;Toppare L .Could green be greener? Novel donor-acceptor-type electrochromic polymers: Towards excellent neutral green materials with exceptional transmissive oxidized states for completion of RGB color space[J].Advanced Materials,2008(4):691-695.
[22] Beaujnge P M;Ellinger S;Reynolds J R .Spray processable green to highly transmissive electrochromics via chemically polymerizable donor-acceptor heterocyclic pentamers[J].Advanced Materials,2008,20:2772.
[23] Zhu Y;Champion RD;Jenekhe SA .Conjugated donor-acceptor copolymer semiconductors with large intramolecular charge transfer: Synthesis, optical properties, electrochemistry, and field effect carrier mobility of thienopyrazine-based copolymers[J].Macromolecules,2006(25):8712-8719.
[24] Wei, YF;Zhang, Q;Jiang, YD;Yu, JS .Novel Low Bandgap EDOT-Naphthalene Bisimides Conjugated Polymers: Synthesis, Redox, and Optical Properties[J].Macromolecular chemistry and physics,2009(9):769-775.
[25] Bredas J L;Heeger A J;Wudl F .Towards organic polymers with very small intrinsic band gaps.Ⅰ.Electronic structure of polyisothianaphthene and derivatives[J].Journal of Chemical Physics,1986,85:4673.
[26] Wudl F;Kobayashi M;Heeger A J .Poly (isothianaphthene)[J].Journal of Organic Chemistry,1984,49:3382.
[27] Cava M P;Lakshmikantham M V .Nonclassical condensed thiophenes[J].Accounts of Chemical Research,1975,8:139.
[28] Shaheen S E et al.Low band-gap polymeric photovoltaic devices[J].Synthetic Metals,2001,121:1583.
[29] Vangeneugden D L;Vanderzande D J M;Salbeck J et al.Synthesis and characterization of a poly(1,3-dithienylisothianaphthene) derivative for bulk heterojunction photovohaic cells[J].Journal of Physical Chemistry C,2001,105:11106.
[30] Kiebooms R.;Wudl F. .Synthesis and characterisation of poly(isothianaphthene methine).[J].Synthetic Metals,1999(1/3):40-43.
[31] Kiebooms R H L;Goto H;Akagi K .Synthesis of a new class of low-band-gap polymers with liquid crystalline substituents[J].Macromolecules,2001,34:7989.
[32] Vangeneugden DL.;Vanderzande DJM.;Gelan JMJV.;Kiebooms RHL. .A general synthetic route towards soluble poly(1,3-dithienylisothianaphthene) derivatives[J].Synthetic Metals,1999(1/3):120-121.
[33] Neugebauer H;Brabec C J;Sariciftci N S et al.Infrared spectroelectrochemical investigations on the doping of soluble poly (isothianapbthene methine) (PIM)[J].Journal of Chemical Physics,1999,110:12108.
[34] Meng H;Tucker D;Chaffins S et al.An unusual electrochromic device based on a new low-bandgap conjugated polymer[J].Advanced Materials,2003,15:146.
[35] Cravino A;Loi M A;Scharber M C et al.Spectroscopic properties of PEDOTEHIITNa novel soluble low band-gap conjugated polymer[J].Synthetic Metals,2003,137:1435.
[36] Sonmez G.;Meng H.;Wudl F. .Very stable low band gap polymer for charge storage purposes and near-infrared applications[J].Chemistry of Materials,2003(26):4923-4929.
[37] Dhanabalan A et al.Synthesis and characterization of a low bandgap conjugated polymer for bulk heterojunction photovoltaic cells[J].Advanced Functional Materials,2001,11:255.
[38] Muhlbacher D;Neugehauer H;Cravino A et al.Comparison of electrochemical and spectroscopic data of the lowbandgap polymer[J].Molecular Crystals and Liquid Crystals,2002,385:85.
[39] Muhlbacher D;Neugebauer H;Cravino A et al.Comparison of the electrochemical and optical bandgap of lowbandgap polymers[J].Synthetic Metals,2003,137:1361.
[40] A.Dhanabalan;P.A. Van Hal;J.K.J. van Duren .Design and synthesis of processible functional copolymers[J].Synthetic Metals,2001(1/3):169-170.
[41] Jayakannan M.;Van Hal PA.;Janssen RAJ. .Synthesis and structure-property relationship of new donor-acceptor-type conjugated monomers and polymers on the basis of thiophene and benzothiadiazole[J].Journal of Polymer Science, Part A. Polymer Chemistry,2002(2):251-261.
[42] Winder C.;Matt G.;Hummelen JC.;Janssen RAJ.;Sariciftci NS.;Brabec CJ. .Sensitization of low bandgap polymer bulk heterojunction solar cells[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2002(0):373-379.
[43] Jayakannan M.;Van Hal PA.;Janssen RAJ. .Synthesis, optical, and electrochemical properties of novel copolymers on the basis of benzothiadiazole and electron-rich arene units[J].Journal of Polymer Science, Part A. Polymer Chemistry,2002(14):2360-2372.
[44] Bundgaard E;Krebs FC .A comparison of the photovoltaic response of head-to-head and head-to-tail coupled poly{(benzo-2,1,3-thiadiazol-4,7-diyl)-(dihexyl[2,2 ']dithiophene-5,5 '-diyl}[J].Polymer bulletin,2005(3):157-164.
[45] Wienk MM;Struijk MP;Janssen RAJ .Low band gap polymer bulk heterojunction solar cells[J].Chemical Physics Letters,2006(4-6):488-491.
[46] Bundgaard E;Krebs F C .Low-band-gap conjugated polymers based on thiophene,benzothiadiazole,and benzobis (thiadiazole)[J].Macromolecules,2006,39:2823.
[47] Kitamura C;Tanaka S;Yamashita Y.Synthesis of new narrow bandgap polymers based on 5,7-di(2-thienyl)thieno[3,4-b]pyrazine and its derivatives[J].Journal of the Chemical Society,Chemical Communications,1994:1585.
[48] Campos L M;Tontcheva A;Gunes S et al.Extended photocurrent spectrum of a low band gap polymer in a bulk heterojunction solar cell[J].Chemistry of Materials,2005,17:4031.
[49] Wienk M M;Turbiez M G R;Struijk M P et al.Low-band gap poly (di-2-thienylthienopyrazine):Fullerene solar cells[J].Applied Physics Letters,2006,88(1-3):153511.
[50] Bernius MT.;O'Brien J.;Wu WS.;Inbasekaran M. .Progress with light-emitting polymers [Review][J].Advanced Materials,2000(23):1737-1750.
[51] Klaerner G.;Miller RD. .Polyfluorene derivatives: Effective conjugation lengths from well-defined oligomers[J].Macromolecules,1998(6):2007-2009.
[52] Hou Q;Xu Y;Yang W et al.Novel red-emitting fluorenebased copolymers[J].Journal of Materials Chemistry,2002,12:2887.
[53] Greczynski G;Fahlman M;Salaneck W R et al.Electronic structure of poly(9,9-dioctylfluorene) in the pristine and reduced state[J].Journal of Chemical Physics,2002,116:1700.
[54] Svensson M;Zhang F et al.High-perfor-mance polymer solar cells of an alternating polyfluorene copolymer and a fullerene derivative[J].Advanced Materials,2003,15:988.
[55] Krebs F C;Nyberg R B;Jogensen M .Influence of residual catalyst on the properties of conjugated polyphenylenevinylene materials:Palladium nanoparticles and poor electrical performance[J].CHEMISTRY OF MATERIALS,2004,16:1313.
[56] 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.
[57] Bundgaard E et al.Effects of intrinsic ZnO buffer layer based on P3HT/PCBM organic solar cells with Al-doped ZnO electrode[J].Solar Energy Materials and Solar Cells,2007,91:1020.
[58] Frederik C.Krebs;Holger Spanggaard .Significant Improvement of Polymer Solar Cell Stability[J].Chemistry of Materials,2005(21):5235-5237.
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