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从聚合物/纳米粒子结构光伏电池的工作原理出发,分别介绍了聚合物/富勒烯衍生物结构光伏电池和聚合物/无机半导体结构光伏电池各自的研究进展,同时比较了这2种结构光伏电池的性能,提出了目前开发聚合物/纳米粒子结构光伏电池所存在的问题与挑战.

The working principle of photovoltaic cells with conjugated polymer/nano-particle structure,and the recent developments of photovoltaic cells with polymer/fullerene derivative structure and polymer/inorganic semicon-ductor structure are introduced respectively.Meanwhile,performance of these two structural photovoltaic cells are an-alyzed and compared.Finally,the current problems of polymer/nano-particle structure photovoltaic cells are put for-ward.

参考文献

[1] Fujii N.;Ohmori Y. .An organic infrared electroluminescent diode utilizing a phthalocyanine film[J].IEEE Transactions on Electron Devices,1997(8):1204-1207.
[2] Green M A;Emery K et al.Solar cell efficiency tables[J].Progress in Photovoltaics:Research and Applications,2003,11(05):347.
[3] Kroeze J E;Hirata N et al.Parameters influencing charge separation in solid-state dye-sensitized,solar cells using novel hole conductors[J].Advanced Functional Materials,2006,16:1832.
[4] Kisselev R;Thelakkat M .Synthesis and characterization of poly(triarylamine)s containing isothianaphthene moieties[J].Macromolecules,2004(24):8951-8958.
[5] Zhu M;Cui T;Varahramyan K et al.Experimental and theoretical investigation of MEH-ppv based Schottky diodes[J].Microelectronic Engineering,2004,75:269.
[6] Kim Y;Choulis SA;Nelson J;Bradley DDC;Cook S;Durrant JR .Device annealing effect in organic solar cells with blends of regioregular poly(3-hexylthiophene) and soluble fullerene[J].Applied physics letters,2005(6):3502-1-3502-3-0.
[7] Scharber, MC;Wuhlbacher, D;Koppe, M;Denk, P;Waldauf, C;Heeger, AJ;Brabec, CL .Design rules for donors in bulk-heterojunction solar cells - Towards 10 % energy-conversion efficiency[J].Advanced Materials,2006(6):789-795.
[8] Kim Y;Cook S;Tuladhar SM;Choulis SA;Nelson J;Durrant JR;Bradley DDC;Giles M;Mcculloch I;Ha CS .A strong regioregularity effect in self-organizing conjugated polymer films and high-efficiency polythiophene: fullerene solar cells[J].Nature materials,2006(3):197-203.
[9] Sirringhaus H et al.Integrated optoelectronic devices based on conjugated polymers[J].Science,1998,280:1741.
[10] Asaduzzaman A M;Schmidt-D'Aloisio K et al.Properties of polythiophene and related conjugated polymers:A density-functonal study[J].Physical Chemistry,2005,7:2714.
[11] Dopant density determination in disordered organic field-effect transistors[J].Journal of Applied Physics,2003(8):4831-4835.
[12] Muhlbacher D;Scharber M C;Morana M et al.High pho-tovoltaic performance of a low-bandgap polymer[J].Advanced Materials,2006,18:2884.
[13] Lee K;Sotzing G A .Poly(thieno[3,4-b]thiophene).A new stable low band gap conducting polymer[J].Macromolecules,2001,34:5746.
[14] MeCulloch I;Heeney M;Bailey C et al.Liquid-crystalline semiconducting polymers with high charge-carrier mobility[J].Nature Materials,2006,18:328.
[15] Ravirajan P;Peiro A M;Nazeeruddin M K et al.Hybrid polymer/zinc oxide photovoltaic devices with vertically orientedZnO nanorods and an amphiphilic molecular interface layer[J].Journal of Physical Chemistry B,2006,110:7635.
[16] Bhargava R.Wide bandgapⅡ一Ⅵ semiconductors[M].Lon-don:INSPEC,1988
[17] Cui D;Xu J;Zhu T et al.Harvest of near infrared light in PbSe nanocrystal-polymer hybrid photovoltaic cells[J].Applied Physics Letters,2006,88:183111.
[18] Talapin, DV;Murray, CB .PbSe nanocrystal solids for n- and p-channel thin film field-effect transistors[J].Science,2005(5745):86-89.
[19] Zhou Y;Li Y;Zhong H et al.Hybrid nanocrystal/poly-mer solar cells based on tetrapod-shaped CdSe_xTe_(1-x) nano-crystals[J].Nanotechnology,2006,17:4041.
[20] von Hauff E;Parisi J;Dyakonov V .Field effect measurements on charge carrier mobilities in various polymer-fullerene blend compositions[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2006(0):506-511.
[21] Zhuravlev K K;Pietryga J M;Sander R K et al.Optical properties of PbSe nanocrystal quantum dots under pressure[J].Applied Physics Letters,2007,90:043110.
[22] Chen Hsiang-Yu;Hou Jianhui;Zhang Shaoqing.Poly-mer solar cells with enhanced open-circuit voltage and effi-ciency[J].Nature Photonics,2009(03):649.
[23] Lee K;Kim J Y;Heeger A .Organic photonic materials and devices Ⅷ[J].PROCEEDINGS OF THE SPIE,2006,6117:61170T.
[24] Reyes-Reyes M;Kim K;Carroll DL .High-efficiency photovoltaic devices based on annealed poly(3-hexylthiophene) and 1-(3-methoxycarbonyl)-propyl-1-phenyl-(6,6)C-61 blends[J].Applied physics letters,2005(8):3506-1-3506-3-0.
[25] GANG LI;VISHAL SHROTRIYA;JINSONG HUANG;VAN YAO;TOM MORIARTY .High-efficiency solution processable polymer photovoltaic cells by self-organization of polymer blends[J].Nature materials,2005(11):864-868.
[26] Yoo S;Potscavage W J;Domercq B et al.Integrated or-ganic photovoltaic modules with a scalable voltage output[J].Applied Physics Letters,2006,89:233516.
[27] Moule AJ;Bonekamp JB;Meerholz K .The effect of active layer thickness and composition on the performance of bulk-heterojunction solar cells[J].Journal of Applied Physics,2006(9):94503-1-94503-7-0.
[28] Ma W;Yang C et al.Thermally stable,efficient polymer solar cells with nanoscale control of the interpenetrating net-work morphology[J].Advanced Functional Materials,2005,15:1617.
[29] Hiorns RC;De Bettignies R;Leroy J;Bailly S;Firon M;Sentein C;Khoukh A;Preud'homme H;Dagron-Lartigau C .High molecular weights, polydispersities, and annealing temperatures in the optimization of bulk-heterojunction photovoltaic cells based on poly(3-hexylthiophene) or poly(3-butylthiophene)[J].Advanced functional materials,2006(17):2263-2273.
[30] Kline RJ;McGehee MD;Kadnikova EN;Liu JS;Frechet JMJ;Toney MF .Dependence of regioregular poly(3-hexylthiophene) film morphology and field-effect mobility on molecular weight[J].Macromolecules,2005(8):3312-3319.
[31] 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.
[32] Sun BQ;Snaith HJ;Dhoot AS;Westenhoff S;Greenham NC .Vertically segregated hybrid blends for photovoltaic devices with improved efficiency[J].Journal of Applied Physics,2005(1):4914-1-4914-6-0.
[33] Huynh W U;Dittmer J J;Alivisatos A P .Hybrid nanorod-polymer solar cells[J].Science,2002,295:2425.
[34] Gur I;Fromer NA;Chen CP;Kanaras AG;Alivisatos AP .Hybrid solar cells with prescribed nanoscale morphologies based on hyperbranched semiconductor nanocrystals[J].Nano letters,2007(2):409-414.
[35] Skaff, H;Sill, K;Emrick, T .Quantum dots tailored with poly(para-phenylene vinylene)[J].Journal of the American Chemical Society,2004(36):11322-11325.
[36] van Beek R;Zoombelt AP;Jenneskens LW;van Walree CA;Donega CD;Veldman D;Janssen RAJ .Side chain mediated electronic contact between a tetrahydro-4H-thiopyran-4-ylidene-appended polythiophene and CdTe quantum dots[J].Chemistry: A European journal,2006(31):8075-8083.
[37] Advincula RC .Hybrid organic-inorganic nanomaterials based on polythiophene dendronized nanoparticles[J].Dalton transactions: An international journal of inorganic chemistry,2006(23):2778-2784.
[38] Locklin, J;Patton, D;Deng, SX;Baba, A;Millan, M;Advincula, RC .Conjugated oligothiophene-dendron-capped CdSe nanoparticles: Synthesis and energy transfer[J].Chemistry of Materials,2004(24):5187-5193.
[39] Beek W J E;Slooff L H;Wicnk M M et al.Hybrid solar cells using a zinc oxide precursor and a conjugated polymer[J].Advanced Functional Materials,2005,15:1703.
[40] Kwong C Y et al.A new suggested class of organic tubular structures[J].Chemical Physics Letters,2004,383:372.
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