Towards High Performance Organic Photovoltaic Cells: A Review of Recent Development in Organic Photovoltaics
暂无分享,去创建一个
[1] M. Leclerc,et al. Additive‐Free Bulk‐Heterojuction Solar Cells with Enhanced Power Conversion Efficiency, Comprising a Newly Designed Selenophene‐Thienopyrrolodione Copolymer , 2013 .
[2] Jean M. J. Fréchet,et al. Dependence of Regioregular Poly(3-hexylthiophene) Film Morphology and Field-Effect Mobility on Molecular Weight , 2005 .
[3] Junsheng Yu,et al. Small molecule dye rubrene doped organic bulk heterojunction solar cells , 2013 .
[4] Martin A. Green,et al. Recent developments in photovoltaics , 2004 .
[5] Markus Schwoerer,et al. Electroluminescence and photovoltaic effect in PPV Schottky diodes , 1994 .
[6] Junsheng Yu,et al. Power efficiency enhancement of solution-processed small-molecule solar cells based on squaraine via thermal annealing and solvent additive methods , 2013 .
[7] Christoph J. Brabec,et al. Correlation Between Structural and Optical Properties of Composite Polymer/Fullerene Films for Organic Solar Cells , 2005 .
[8] Shinuk Cho,et al. The effect of processing additive on aggregated fullerene derivatives in bulk-heterojunction polymer solar cells , 2012 .
[9] Thomas Strobel,et al. Role of the Charge Transfer State in Organic Donor–Acceptor Solar Cells , 2010, Advanced materials.
[10] Qibing Pei,et al. Solution-processed DPP-based small molecule that gives high photovoltaic efficiency with judicious device optimization. , 2013, ACS applied materials & interfaces.
[11] Robert A. Street,et al. Recombination Through Different Types of Localized States in Organic Solar Cells , 2012 .
[12] P. Meredith,et al. Controlling Hierarchy in Solution‐processed Polymer Solar Cells Based on Crosslinked P3HT , 2013 .
[13] Junsheng Yu,et al. Influence of bias voltage and temperature on charge transfer states in organic photovoltaic and electroluminescent integrated device , 2014 .
[14] Matthew Y. Sfeir,et al. Polymer bulk heterojunction solar cells employing Förster resonance energy transfer , 2013, Nature Photonics.
[15] Junsheng Yu,et al. Effect of buffer layers on the performance of organic photovoltaic cells based on copper phthalocyanine and C60 , 2010 .
[16] R. Friend,et al. The role of spin in the kinetic control of recombination in organic photovoltaics , 2013, Nature.
[17] Richa Pandey,et al. Graded Donor‐Acceptor Heterojunctions for Efficient Organic Photovoltaic Cells , 2010, Advanced materials.
[18] S. Forrest,et al. Photodegradation of small-molecule organic photovoltaics , 2014 .
[19] A. Greiner,et al. Polymer Nanotubes by Wetting of Ordered Porous Templates , 2002, Science.
[20] J. Hummelen,et al. Polymer Photovoltaic Cells: Enhanced Efficiencies via a Network of Internal Donor-Acceptor Heterojunctions , 1995, Science.
[21] Long Ye,et al. Highly Efficient 2D-Conjugated Benzodithiophene-Based Photovoltaic Polymer with Linear Alkylthio Side Chain , 2014 .
[22] Shijun Jia,et al. Polymer–Fullerene Bulk‐Heterojunction Solar Cells , 2009, Advanced materials.
[23] Alan J. Heeger,et al. Semiconducting polymers (as donors) and buckminsterfullerene (as acceptor): photoinduced electron transfer and heterojunction devices , 1993 .
[24] Junsheng Yu,et al. Organic solar cells with a multicharge separation structure consisting of a thin rubrene fluorescent dye for open circuit voltage enhancement , 2011 .
[25] Wei Zhang,et al. Primary Dynamics of Exciton and Charge Photogeneration in Solvent Vapor Annealed P3HT/PCBM Films , 2012 .
[26] G. Cerullo,et al. Hot exciton dissociation in polymer solar cells. , 2013, Nature materials.
[27] A. Facchetti,et al. Bithiophene Imide and Benzodithiophene Copolymers for Efficient Inverted Polymer Solar Cells , 2012, Advanced materials.
[28] Gang Li,et al. “Solvent Annealing” Effect in Polymer Solar Cells Based on Poly(3‐hexylthiophene) and Methanofullerenes , 2007 .
[29] W. Tsoi,et al. Effects of a heavy atom on molecular order and morphology in conjugated polymer:fullerene photovoltaic blend thin films and devices. , 2012, ACS nano.
[30] Yongfang Li,et al. Improvement of open-circuit voltage and photovoltaic properties of 2D-conjugated polymers by alkylthio substitution , 2014 .
[31] T. Shafai,et al. A quantitative study of the formation of PCBM clusters upon thermal annealing of P3HT/PCBM bulk heterojunction solar cell , 2013 .
[32] Suren A. Gevorgyan,et al. Scalability and stability of very thin, roll-to-roll processed, large area, indium-tin-oxide free polymer solar cell modules , 2013 .
[33] In situ monitoring of photovoltaic properties in organic solar cells during thermal annealing , 2012 .
[34] Martin A. Green,et al. Solar cell efficiency tables , 1993 .
[35] Dong Yun Lee,et al. Poly(3‐hexylthiophene) Nanorods with Aligned Chain Orientation for Organic Photovoltaics , 2010 .
[36] A. Jen,et al. Halogen-free solvent processing for sustainable development of high efficiency organic solar cells , 2012 .
[37] M. Sommer,et al. Solvent Additive Control of Morphology and Crystallization in Semiconducting Polymer Blends , 2012, Advanced materials.
[38] Robert P. H. Chang,et al. Morphology‐Performance Relationships in High‐Efficiency All‐Polymer Solar Cells , 2014 .
[39] Mikkel Jørgensen,et al. A laboratory scale approach to polymer solar cells using one coating/printing machine, flexible substrates, no ITO, no vacuum and no spincoating , 2013 .
[40] A. Heeger,et al. High‐Efficiency Polymer Solar Cells Enhanced by Solvent Treatment , 2013, Advanced materials.
[41] Xinge Yu,et al. Investigation of in situ annealing on poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate): towards all-solution-processed inverted polymer solar cells , 2014 .
[42] Junsheng Yu,et al. Spectral variation of solution-processed blue bis[(4,6-difluorophenyl)-pyridinato-N,C2′] (picolinate) iridium(III) phosphor , 2014 .
[43] Etienne Goovaerts,et al. Effect of temperature on the morphological and photovoltaic stability of bulk heterojunction polymer: fullerene solar cells , 2008 .
[44] Frédéric Laquai,et al. Ultrafast exciton dissociation followed by nongeminate charge recombination in PCDTBT:PCBM photovoltaic blends. , 2011, Journal of the American Chemical Society.
[45] Qiaoqiang Gan,et al. Plasmonic‐Enhanced Organic Photovoltaics: Breaking the 10% Efficiency Barrier , 2013, Advanced materials.
[46] Michael D. McGehee,et al. Polymer-based solar cells , 2007 .
[47] Samson A Jenekhe,et al. The role of mesoscopic PCBM crystallites in solvent vapor annealed copolymer solar cells. , 2009, ACS nano.
[48] Yang Yang,et al. Systematic investigation of benzodithiophene- and diketopyrrolopyrrole-based low-bandgap polymers designed for single junction and tandem polymer solar cells. , 2012, Journal of the American Chemical Society.
[49] Stephen Barlow,et al. Acceptor energy level control of charge photogeneration in organic donor/acceptor blends. , 2010, Journal of the American Chemical Society.
[50] Xinge Yu,et al. Ultraflexible Polymer Solar Cells Using Amorphous Zinc−Indium−Tin Oxide Transparent Electrodes , 2014, Advanced materials.
[51] Carlos Silva,et al. Exciton regeneration at polymeric semiconductor heterojunctions. , 2004, Physical review letters.
[52] Niyazi Serdar Sariciftci,et al. Morphology of polymer/fullerene bulk heterojunction solar cells , 2006 .
[53] C. A. Walsh,et al. Efficient photodiodes from interpenetrating polymer networks , 1995, Nature.
[54] Junsheng Yu,et al. Low roll off radiation efficiency of charge transfer state excitons based on organic photovoltaic and electroluminescent integrated device , 2013 .
[55] Mukti Aryal,et al. Imprinted large-scale high density polymer nanopillars for organic solar cells , 2008 .
[56] David Beljonne,et al. The Role of Driving Energy and Delocalized States for Charge Separation in Organic Semiconductors , 2012, Science.
[57] Daniel Abou-Ras,et al. Development of thin‐film Cu(In,Ga)Se2 and CdTe solar cells , 2004 .
[58] R. Friend,et al. The Binding Energy of Charge-Transfer Excitons Localized at Polymeric Semiconductor Heterojunctions , 2011 .
[59] Miao Xu,et al. Enhanced power-conversion efficiency in polymer solar cells using an inverted device structure , 2012, Nature Photonics.
[60] Shuhong Yu,et al. Polymer‐Controlled Crystallization of Unique Mineral Superstructures , 2010, Advanced materials.
[61] O. Park,et al. The role of non-solvent swelling in bulk hetero junction solar cells , 2012 .
[62] Zhenan Bao,et al. Solvent additives and their effects on blend morphologies of bulk heterojunctions , 2011 .
[63] Andrea Bernardi,et al. The role of buffer layers in polymer solar cells , 2011 .
[64] Mukti Aryal,et al. Nano-confinement Induced Chain Alignment in Ordered P3ht Nanostructures Defined by Nanoimprint Lithography High-density, and Ordered Nanostructures in Conjugated Polymer Poly(3-hexylthiophene) or P3ht, and Also to Simultaneously Control 3d Chain Alignment within These P3ht Nanostructures. Out-of-pla , 2022 .
[65] Zhao Li,et al. Bulk heterojunction solar cells based on a new low-band-gap polymer: Morphology and performance , 2011 .
[66] R. Friend,et al. Formation of nanopatterned polymer blends in photovoltaic devices. , 2010, Nano letters.
[67] Ian E. Jacobs,et al. Correlating dilute solvent interactions to morphology and OPV device performance , 2013 .
[68] Xiaoniu Yang,et al. The Effect of Thermal Treatment on the Morphology and Charge Carrier Dynamics in a Polythiophene–Fullerene Bulk Heterojunction , 2005 .
[69] T. J. McCarthy,et al. Template synthesis and self-assembly of nanoscopic polymer "pencils" , 2003 .
[70] Xiaowei Li,et al. Formation of charge‐transfer complexes significantly improves the performance of polymer solar cells based on PBDTTT‐C‐T: PC71BM , 2015 .
[71] Frédéric Laquai,et al. The effect of solvent additives on morphology and excited-state dynamics in PCPDTBT:PCBM photovoltaic blends. , 2012, Journal of the American Chemical Society.
[72] Olga Wodo,et al. A graph-based formulation for computational characterization of bulk heterojunction morphology , 2012 .
[73] M. Dadmun,et al. Precise Structural Development and its Correlation to Function in Conjugated Polymer: Fullerene Thin Films by Controlled Solvent Annealing , 2013 .
[74] Zhenan Bao,et al. Effects of Thermal Annealing Upon the Morphology of Polymer–Fullerene Blends , 2010 .
[75] Xinyuan Xia,et al. Solid-state, polymer-based fiber solar cells with carbon nanotube electrodes. , 2012, ACS nano.
[76] Stephen R. Forrest,et al. Thermodynamic efficiency limit of excitonic solar cells , 2011 .
[77] J. D’Haen,et al. Tuning the Dimensions of C60‐Based Needlelike Crystals in Blended Thin Films , 2006 .
[78] Xiaoniu Yang,et al. Nanoscale morphology of high-performance polymer solar cells. , 2005, Nano letters.
[79] M. Chabinyc,et al. Recent progress in the morphology of bulk heterojunction photovoltaics , 2011 .
[80] Daniel Moses,et al. Method for increasing the photoconductive response in conjugated polymer/fullerene composites , 2006 .
[81] Ligui Li,et al. Solvent-soaking treatment induced morphology evolution in P3HT/PCBM composite films , 2011 .
[82] A. Jen,et al. Indacenodithiophene and Quinoxaline-Based Conjugated Polymers for Highly Efficient Polymer Solar Cells , 2011 .
[83] W. Su,et al. Facile hot solvent vapor annealing for high performance polymer solar cell using spray process , 2013 .
[84] Eric T. Hoke,et al. Molecular packing and solar cell performance in blends of polymers with a bisadduct fullerene. , 2012, Nano letters.
[85] L. Onsager. Initial Recombination of Ions , 1938 .
[86] Hyun Jun Lee,et al. Negative mold transfer patterned conductive polymer electrode for flexible organic light-emitting diodes , 2013 .
[87] Kan Li,et al. Embedded surface relief gratings by a simple method to improve absorption and electrical properties of polymer solar cells. , 2012, ACS applied materials & interfaces.
[88] Ming-Chung Chen,et al. Small organic additive to improve the charge separation in an inverted bulk heterojunction organic photovoltaic , 2012 .
[89] J. Rogers,et al. A Stretchable Form of Single-Crystal Silicon for High-Performance Electronics on Rubber Substrates , 2006, Science.
[90] Ligui Li,et al. Precise construction of PCBM aggregates for polymer solar cells via multi-step controlled solvent vapor annealing , 2010 .
[91] S. Alam,et al. A comparative study on the influence of alkyl thiols on the structural transformations in P3HT/PCBM and P3OT/PCBM blends , 2013 .
[92] A. J. Heeger,et al. Photoinduced Electron Transfer from a Conducting Polymer to Buckminsterfullerene , 1992, Science.
[93] John B. Asbury,et al. Barrierless free carrier formation in an organic photovoltaic material measured with ultrafast vibrational spectroscopy. , 2009, Journal of the American Chemical Society.
[94] Chang-Zhi Li,et al. Polymer triplet energy levels need not limit photocurrent collection in organic solar cells. , 2012, Journal of the American Chemical Society.
[95] Junsheng Yu,et al. Color-tunable and high-efficiency organic light-emitting diode by adjusting exciton bilateral migration zone , 2013 .
[96] U. Jeng,et al. Competition between fullerene aggregation and poly(3-hexylthiophene) crystallization upon annealing of bulk heterojunction solar cells. , 2011, ACS nano.
[97] P. Ruchhoeft,et al. Direct patterning of conductive polymer domains for photovoltaic devices. , 2012, ACS applied materials & interfaces.
[98] Tao Wang,et al. Correlating Structure with Function in Thermally Annealed PCDTBT:PC70BM Photovoltaic Blends , 2012 .
[99] Chang Yong Liu,et al. Thermo-Mechanical Numerical Simulation on P91 Closed Upsetting Process , 2010 .
[100] J. Martorell,et al. Transparent polymer solar cells employing a layered light-trapping architecture , 2013, Nature Photonics.
[101] R. Amal,et al. Influence of annealing temperature of WO3 in photoelectrochemical conversion and energy storage for water splitting. , 2013, ACS applied materials & interfaces.
[102] Wei Lin Leong,et al. Solution-processed small-molecule solar cells with 6.7% efficiency. , 2011, Nature materials.
[103] Yanhua Xie,et al. Thermal annealing influence on poly(3-hexyl-thiophene)/phenyl-C61-butyric acid methyl ester-based solar cells with anionic conjugated polyelectrolyte as cathode interface layer , 2012 .
[104] Robert P. H. Chang,et al. Polymer solar cells with enhanced fill factors , 2013, Nature Photonics.
[105] Charles L. Braun,et al. Electric field assisted dissociation of charge transfer states as a mechanism of photocarrier production , 1984 .
[106] Junsheng Yu,et al. Effect of two-step annealing on the performance of ternary polymer solar cells based on P3HT:PC71BM:SQ , 2014 .
[107] T. Russell,et al. P3HT nanopillars for organic photovoltaic devices nanoimprinted by AAO templates. , 2012, ACS nano.
[108] Martin Heeney,et al. Fullerene crystallisation as a key driver of charge separation in polymer/fullerene bulk heterojunction solar cells , 2012 .
[109] Nicolas C. Pégard,et al. Wrinkles and deep folds as photonic structures in photovoltaics , 2012, Nature Photonics.
[110] Shinuk Cho,et al. Amine‐Based Polar Solvent Treatment for Highly Efficient Inverted Polymer Solar Cells , 2014, Advanced materials.
[111] Nelson E. Coates,et al. Bulk heterojunction solar cells with internal quantum efficiency approaching 100 , 2009 .
[112] Tracey M. Clarke,et al. Charge photogeneration in organic solar cells. , 2010, Chemical reviews.
[113] David S. Germack,et al. Measuring Domain Sizes and Compositional Heterogeneities in P3HT‐PCBM Bulk Heterojunction Thin Films with 1H Spin Diffusion NMR Spectroscopy , 2012 .
[114] Shigenori Morita,et al. Doping effect of buckminsterfullerene in conducting polymer: Change of absorption spectrum and quenching of luminescene , 1992 .
[115] Trisha L. Andrew,et al. Improving the performance of P3HT-fullerene solar cells with side-chain-functionalized poly(thiophene) additives: a new paradigm for polymer design. , 2012, ACS nano.
[116] A. Troisi,et al. Absolute Rate of Charge Separation and Recombination in a Molecular Model of the P3HT/PCBM Interface , 2011 .
[117] Yan Xu,et al. Wetting behaviors of hyperbranched polymer composites within ordered porous template under vibration , 2012 .
[118] P. E. Keivanidis,et al. Correlating Emissive Non‐Geminate Charge Recombination with Photocurrent Generation Efficiency in Polymer/Perylene Diimide Organic Photovoltaic Blend Films , 2012 .
[119] John A Rogers,et al. Controlled buckling of semiconductor nanoribbons for stretchable electronics , 2006, Nature nanotechnology.
[120] R. Friend,et al. Unequal partnership: asymmetric roles of polymeric donor and fullerene acceptor in generating free charge. , 2014, Journal of the American Chemical Society.
[121] Junsheng Yu,et al. Effect of in situ annealing on the performance of spray coated polymer solar cells , 2013 .
[122] Luping Yu,et al. When Function Follows Form: Effects of Donor Copolymer Side Chains on Film Morphology and BHJ Solar Cell Performance , 2010, Advanced materials.
[123] J. Teuscher,et al. Efficient Hybrid Solar Cells Based on Meso-Superstructured Organometal Halide Perovskites , 2012, Science.
[124] Yong Joo Cho,et al. Polymer bulk heterojunction photovoltaics employing a squaraine donor additive , 2013 .
[125] J. H. Kim,et al. Effect of the number of thiophene rings in polymers with 2,1,3-benzooxadiazole core on the photovoltaic properties , 2013 .
[126] T. P. Russell,et al. Multi‐Length‐Scale Morphologies in PCPDTBT/PCBM Bulk‐Heterojunction Solar Cells , 2012 .
[127] A J Heeger,et al. Efficiency enhancement in low-bandgap polymer solar cells by processing with alkane dithiols. , 2007, Nature materials.
[128] Garry Rumbles,et al. An Optimal Driving Force for Converting Excitons into Free Carriers in Excitonic Solar Cells , 2012 .
[129] Christoph J. Brabec,et al. A solution-processable star-shaped molecule for high-performance organic solar cells via alkyl chain engineering and solvent additive , 2013 .
[130] Sooji Nam,et al. Effects of direct solvent exposure on the nanoscale morphologies and electrical characteristics of PCBM-based transistors and photovoltaics , 2012 .
[131] Yi-jie Gu,et al. Research progress on polymer heterojunction solar cells , 2012 .
[132] Bin Hu,et al. Thermal annealing effect on internal electrical polarization in organic solar cells , 2013 .
[133] Niyazi Serdar Sariciftci,et al. Organic solar cells: An overview , 2004 .
[134] Junsheng Yu,et al. Organic photovoltaic cells based on TPBi as a cathode buffer layer , 2011 .
[135] M. Grätzel,et al. Sequential deposition as a route to high-performance perovskite-sensitized solar cells , 2013, Nature.
[136] D. S. Martyanov,et al. Ultrafast charge photogeneration dynamics in ground-state charge-transfer complexes based on conjugated polymers. , 2008, The journal of physical chemistry. B.
[137] Henry J. Snaith,et al. Efficient planar heterojunction perovskite solar cells by vapour deposition , 2013, Nature.
[138] Luping Yu,et al. The role of N-doped multiwall carbon nanotubes in achieving highly efficient polymer bulk heterojunction solar cells. , 2013, Nano letters.
[139] S. Singh,et al. Solution processed bulk heterojunction polymer solar cells with low band gap DPP-CN small molecule sensitizer , 2012 .
[140] A. Heeger,et al. Molecular Doping Enhances Photoconductivity in Polymer Bulk Heterojunction Solar Cells , 2013, Advanced materials.
[141] Neil C Greenham,et al. Polymer solar cells , 2013, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[142] H. Butt,et al. Effect of Morphological Changes on Presence of Trap States in P3HT:PCBM Solar Cells Studied by Cross-Sectional Energy Filtered TEM and Thermally Stimulated Current Measurements , 2013 .
[143] H. Sirringhaus,et al. Integrated optoelectronic devices based on conjugated polymers , 1998, Science.
[144] Zhenan Bao,et al. Manipulating the Morphology of P3HT–PCBM Bulk Heterojunction Blends with Solvent Vapor Annealing , 2012 .
[145] Highly Efficient Solar Cells Based on the Copolymer of Benzodithiophene and Thienopyrroledione with Solvent Annealing , 2013 .
[146] D. Carroll,et al. Tube-based geometries for organic photovoltaics , 2010 .
[147] David L. Carroll,et al. Optical geometries for fiber-based organic photovoltaics , 2007 .
[148] S. Beaupré,et al. Control of the active layer nanomorphology by using co-additives towards high-performance bulk heterojunction solar cells , 2012 .
[149] Jianhui Hou,et al. Application of Bis-PCBM in Polymer Solar Cells with Improved Voltage , 2013 .
[150] Thomas Strobel,et al. Role of polaron pair diffusion and surface losses in organic semiconductor devices. , 2010, Physical review letters.
[151] G. Sharma,et al. Effect of solvent and subsequent thermal annealing on the performance of phenylenevinylene copolymer: PCBM solar cells. , 2010, ACS applied materials & interfaces.
[152] K. Wei,et al. Ordered polythiophene/fullerene composite core–shell nanorod arrays for solar cell applications , 2009, Nanotechnology.
[153] C. Brabec,et al. Solar Power Wires Based on Organic Photovoltaic Materials , 2009, Science.
[154] F. Krebs,et al. Low band gap polymers for organic photovoltaics , 2007 .
[155] Luping Yu,et al. Effects of additives on the morphology of solution phase aggregates formed by active layer components of high-efficiency organic solar cells. , 2011, Journal of the American Chemical Society.
[156] Wei Jiang,et al. Integrated Molecular, Interfacial, and Device Engineering towards High‐Performance Non‐Fullerene Based Organic Solar Cells , 2014, Advanced materials.
[157] Xinge Yu,et al. Alkoxy‐Functionalized Thienyl‐Vinylene Polymers for Field‐Effect Transistors and All‐Polymer Solar Cells , 2014 .
[158] Martin A. Green,et al. Solar cell efficiency tables (version 39) , 2012 .
[159] Nader Engheta,et al. Nanoinsulators and nanoconnectors for optical nanocircuits , 2007, cond-mat/0703600.
[160] A. Heeger,et al. 25th Anniversary Article: Bulk Heterojunction Solar Cells: Understanding the Mechanism of Operation , 2014, Advanced materials.
[161] Yang Yang,et al. A polymer tandem solar cell with 10.6% power conversion efficiency , 2013, Nature Communications.
[162] Rommel Noufi,et al. Progress toward 20% efficiency in Cu(In,Ga)Se2 polycrystalline thin‐film solar cells , 1999 .
[163] C. Tang. Two‐layer organic photovoltaic cell , 1986 .
[164] Gang Li,et al. 25th Anniversary Article: A Decade of Organic/Polymeric Photovoltaic Research , 2013, Advanced materials.
[165] N. Lewis. Toward Cost-Effective Solar Energy Use , 2007, Science.
[166] Wen‐Chang Chen,et al. Enhancement of power conversion efficiency and long-term stability of P3HT/PCBM solar cells using C60 derivatives with thiophene units as surfactants , 2012 .
[167] Samson A. Jenekhe,et al. Photovoltaic and photoconductive properties of aluminum/poly(p-phenylene vinylene) interfaces , 1994 .
[168] A. Heeger,et al. Improved light harvesting and improved efficiency by insertion of an optical spacer (ZnO) in solution-processed small-molecule solar cells. , 2013, Nano letters.
[169] N. E. Coates,et al. Efficient Tandem Polymer Solar Cells Fabricated by All-Solution Processing , 2007, Science.
[170] Dong Lim Kim,et al. Hole transport enhancing effects of polar solvents on poly(3,4-ethylenedioxythiophene):poly(styrene sulfonic acid) for organic solar cells. , 2012, ACS applied materials & interfaces.
[171] Q. Peng,et al. Development of large band-gap conjugated copolymers for efficient regular single and tandem organic solar cells. , 2013, Journal of the American Chemical Society.
[172] Jccm Boukje Huijben,et al. 26.1% thin-film GaAs solar cell using epitaxial lift-off , 2009 .
[173] Jenny Nelson,et al. Factors Limiting Device Efficiency in Organic Photovoltaics , 2013, Advanced materials.
[174] M. Hilczer,et al. Unified Theory of Geminate and Bulk Electron−Hole Recombination in Organic Solar Cells , 2010 .
[175] A. Djurišić,et al. Annealing of P3HT:PCBM blend film--the effect on its optical properties. , 2013, ACS applied materials & interfaces.
[176] Christoph J. Brabec,et al. High Photovoltaic Performance of a Low‐Bandgap Polymer , 2006 .
[177] L. Qiu,et al. Polymer photovoltaic wires based on aligned carbon nanotube fibers , 2012 .
[178] Ching-Fuh Lin,et al. Poly(3-hexylthiophene):indene-C60 bisadduct morphology improvement by the use of polyvinylcarbazole as additive , 2013 .
[179] H. Murata,et al. Thinking small for solar , 2012 .
[180] S. Beaupré,et al. Highly efficient thieno[3,4-c]pyrrole-4,6-dione-based solar cells processed from non-chlorinated solvent , 2014 .
[181] Martin Steinhart,et al. Nanotubes by template wetting: a modular assembly system. , 2004, Angewandte Chemie.
[182] Jin Young Kim,et al. Processing additives for improved efficiency from bulk heterojunction solar cells. , 2008, Journal of the American Chemical Society.
[183] Peyman Servati,et al. Solvent–vapor induced morphology reconstruction for efficient PCDTBT based polymer solar cells , 2013 .