实现聚合物太阳能电池的商业化应用有两个关键技术因素:能量转换效率和热稳定性.在近几年里,能量转换效率已经成功突破10%.与此同时,器件热稳定性的研究也一直在有条不紊的展开.本文总结了近年来在聚合物太阳能电池光敏层热稳定性的研究进展,详细阐述了提高形貌热稳定性的常用方法,并对器件热稳定性的研究进行了展望.
参考文献
[1] | Zhen Lu;Cui-hong Li;Chun Du;Xue Gong;Zhi-shan Bo.6,7-DIALKOXY-2,3-DIPHENYLQUINOXALINE BASED CONJUGATED POLYMERS FOR SOLAR CELLS WITH HIGH OPEN-CIRCUIT VOLTAGE[J].高分子科学(英文版),2013(06):901-911. |
[2] | Yusoff, Abd. Rashid bin Mohd;Kim, Dongcheon;Kim, Hyeong Pil;Shneider, Fabio Kurt;da Silva, Wilson Jose;Jang, Jin.A high efficiency solution processed polymer inverted triple-junction solar cell exhibiting a power conversion efficiency of 11.83%[J].Energy & environmental science: EES,20151(1):303-316. |
[3] | Mikkel Jorgensen;Kion Norrrnan;Suren A. Gevorgyan;Thomas Tromholt;Birgitta Andreasen;Frederik C. Krebs.Stability of Polymer Solar Cells[J].Advanced Materials,20125(5):580-612. |
[4] | Seo, J.H.;Gutacker, A.;Sun, Y.;Wu, H.;Huang, F.;Cao, Y.;Scherf, U.;Heeger, A.J.;Bazan, G.C..Improved high-efficiency organic solar cells via incorporation of a conjugated polyelectrolyte interlayer[J].Journal of the American Chemical Society,201122(22):8416-8419. |
[5] | Grisorio, R.;Allegretta, G.;Mastrorilli, P.;Suranna, G.P..On the degradation process involving polyfluorenes and the factors governing their spectral stability[J].Macromolecules,201120(20):7977-7986. |
[6] | Jorgensen M;Norrman K;Krebs FC.Stability/degradation of polymer solar cells[J].Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion,20087(7):686-714. |
[7] | Pan, C.;Li, H.;Akgun, B.;Satijia, S.K.;Zhu, Y.;Xu, D.;Ortiz, J.;Gersappe, D.;Rafailovich, M.H..Enhancing the efficiency of bulk heterojunction solar cells via templated self-assembly[J].Macromolecules,20135(5):1812-1819. |
[8] | Fischer, F.S.U.;Tremel, K.;Saur, A.-K.;Link, S.;Kayunkid, N.;Brinkmann, M.;Herrero-Carvajal, D.;Navarrete, J.T.L.;Delgado, M.C.R.;Ludwigs, S..Influence of processing solvents on optical properties and morphology of a semicrystalline low bandgap polymer in the neutral and charged states[J].Macromolecules,201312(12):4924-4931. |
[9] | Jang Jo;Seok-Soon Kim;Seok-ln Na;Byung-Kwan Yu;Dong-Yu Kim.Time-dependent Morphology Evolution By Annealing Processes On Polymer:fullerene Blend Solar Cells[J].Advanced Functional Materials,20096(6):866-874. |
[10] | Guanghao Lu;Ligui Li;Xiaoniu Yang.Achieving Perpendicular Alignment of Rigid Polythiophene Backbones to the Substrate by Using Solvent-Vapor Treatment[J].Advanced Materials,200721(21):3594-3598. |
[11] | Yang X;Loos J.Toward high-performance polymer solar cells: The importance of morphology control[J].Macromolecules,20075(5):1353-1362. |
[12] | Mueller, Christian.On the Glass Transition of Polymer Semiconductors and Its Impact on Polymer Solar Cell Stability[J].Chemistry of Materials: A Publication of the American Chemistry Society,20158(8):2740-2754. |
[13] | Xiaoniu Yang;Jeroen K.J.van Duren;Rene A.J.Janssen;Matthina A.J.Michels;Joachim Loos.Morphology and Thermal Stability of the Active Layer in Poly(p-phenylenevinylene)/Methanofullerene Plastic Photovoltaic Devices[J].Macromolecules,20046(6):2151-2158. |
[14] | Bertho S;Janssen G;Cleij TJ;Conings B;Moons W;Gadisa A;D'Haen J;Goovaerts E;Lutsen L;Manca J.Effect of temperature on the morphological and photovoltaic stability of bulk heterojunction polymer: fullerene solar cells[J].Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion,20087(7):753-760. |
[15] | Xiaoniu Yang;Jeroen K. J. van Duren;Minze T. Rispens;Jan C. Hummelen;Rene A. J. Janssen;Matthias A. J. Michels;Joachim Loos.Crystalline Organization of a Methanofullerene as Used for Plastic Solar-Cell Applications[J].Advanced Materials,20049/10(9/10):802-806. |
[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,20054(4):579-583. |
[17] | Enhanced Thermal Stability and Efficiency of Polymer BuIk-Heterojunction Solar Cells by Low-Temperature Drying of the Active Layer[J].Advanced functional materials,20105(5):834. |
[18] | Li, L.;Jacobs, D.L.;Che, Y.;Huang, H.;Bunes, B.R.;Yang, X.;Zang, L..Poly(3-hexylthiophene) nanofiber networks for enhancing the morphology stability of polymer solar cells[J].Organic electronics,20135(5):1383-1390. |
[19] | Li LG;Lu GH;Yang XN.Improving performance of polymer photovoltaic devices using an annealing-free approach via construction of ordered aggregates in solution[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,200817(17):1984-1990. |
[20] | Yang XN;Alexeev A;Michels MAJ;Loos J.Effect of spatial confinement on the morphology evolution of thin poly(p-phenylenevinylene)/methanofullerene composite films[J].Macromolecules,200510(10):4289-4295. |
[21] | Zhou ZY;Chen XW;Holdcroft S.Stabilizing bicontinuous nanophase segregation in pi CP-C-60 donor-acceptor blends[J].Journal of the American Chemical Society,200835(35):11711-11718. |
[22] | Kevin Sivula;Zachary T. Ball;Nobuhiro Watanabe;Jean M. J. Frechet.Amphiphilic Diblock Copolymer Compatibilizers and Their Effect on the Morphology and Performance of Polythiophene:Fullerene Solar Cells[J].Advanced Materials,20062(2):206-210. |
[23] | Jong Bok Kim;Kathryn Allen;Soong Ju Oh.Small-Molecule Thiophene-C6o Dyads As Compatibilizers in Inverted Polymer Solar Cells[J].Chemistry of Materials: A Publication of the American Chemistry Society,201020(20):5762-5773. |
[24] | Guillaume Wantz;Lionel Derue;Olivier Dautel.Stabilizing polymer-based bulk heterojunction solar cells via crosslinking[J].Polymer international,20148(8):1346-1361. |
[25] | Rumer, Joseph W.;McCulloch, Iain.Organic photovoltaics: Crosslinking for optimal morphology and stability[J].Materials Today,20158(8):425-435. |
[26] | Gianmarco Griffini;Jessica D. Douglas;Claudia Piliego;Thomas W. Holcombe;Stefano Turri;Jean M.J. Frechet;Justin L. Mynar.Long-Term Thermal Stability of High-Efficiency Polymer Solar Cells Based on Photocrosslinkable Donor-Acceptor Conjugated Polymers[J].Advanced Materials,201114(14):1660-1664. |
[27] | Qian, D.;Xu, Q.;Hou, X.;Wang, F.;Hou, J.;Tan, Z..Stabilization of the film morphology in polymer: Fullerene heterojunction solar cells with photocrosslinkable bromine-functionalized low-bandgap copolymers[J].Journal of Polymer Science, Part A. Polymer Chemistry,201315(15):3123-3131. |
[28] | Qi Xu;Fuzhi Wang;Deping Qian.Construction of Planar and Bulk Integrated Heterojunction Polymer Solar Cells Using Cross-Linkable D-A Copolymer[J].ACS applied materials & interfaces,201314(14):6591-6597. |
[29] | Hyeong Jun Kim;A-Reum Han;Chul-Hee Cho.Solvent-Resistant Organic Transistors and Thermally Stable Organic Photovoltaics Based on Cross-linkable Conjugated Polymers[J].Chemistry of Materials: A Publication of the American Chemistry Society,20121(1):215-221. |
[30] | Bobak Gholamkhass;Steven Holdcroft.Toward Stabilization of Domains in Polymer Bulk Heterojuhction Films[J].Chemistry of Materials: A Publication of the American Chemistry Society,201018(18):5371-5376. |
[31] | Rui-Qi Png;Perq-Jon Chia;Jie-Cong Tang.High-performance polymer semiconducting heterostructure devices by nitrene-mediated photocrosslinking of alkyl side chains[J].Nature materials,20102(2):152-158. |
[32] | Rumer, Joseph W.;Ashraf, Raja S.;Eisenmenger, Nancy D.;Huang, Zhenggang;Meager, Iain;Nielsen, Christian B.;Schroeder, Bob C.;Chabinyc, Michael L.;McCulloch, Iain.Dual Function Additives: A Small Molecule Crosslinker for Enhanced Efficiency and Stability in Organic Solar Cells[J].Advanced energy materials,20159(9):1. |
[33] | Jinsong Liu;Ekaterina N.Kadnikova;Yuxiang Liu.Polythiophene Containing Thermally Removable Solubilizing Groups Enhances the Interface and the Performance of Polymer-Titania Hybrid Solar Cells[J].Journal of the American Chemical Society,200431(31):9486-9487. |
[34] | Suren A. Gevorgyan;Frederik C. Krebs.Bulk Heterojunctions Based on Native Polythiophene[J].Chemistry of Materials: A Publication of the American Chemistry Society,200813(13):4386-4390. |
[35] | Frederik C.Krebs;Holger Spanggaard.Significant Improvement of Polymer Solar Cell Stability[J].Chemistry of Materials,200521(21):5235-5237. |
[36] | Frederik C. Krebs;Kion Norrman.Using Light-Induced Thermocleavage in a Roll-to-Roll Process for Polymer Solar Cells[J].ACS applied materials & interfaces,20103(3):877-887. |
[37] | Martin Helgesen;Frederik C. Krebs.Photovoltaic Performance of Polymers Based on Dithienylthienopyrazines Bearing Thermocleavable Benzoate Esters[J].Macromolecules,20103(3):1253-1260. |
[38] | Kevin Sivula;Christine K.Luscombe;Barry C.Thompson.Enhancing the Thermal Stability of Polythiophene:Fullerene Solar Cells by Decreasing Effective Polymer Regioregularity[J].Journal of the American Chemical Society,200643(43):13988-13989. |
[39] | Verstappen, Pieter;Kesters, Jurgen;D'Olieslaeger, Lien;Drijkoningen, Jeroen;Cardinaletti, Ilaria;Vangerven, Tim;Bruijnaers, Bardo J.;Willems, Robin E. M.;D'Haen, Jan;Manca, Jean V.;Lutsen, Laurence;Vanderzande, Dirk J. M.;Maes, Wouter.Simultaneous Enhancement of Solar Cell Efficiency and Stability by Reducing the Side Chain Density on Fluorinated PCPDTQx Copolymers[J].Macromolecules,201512(12):3873-3882. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%