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Effect on Electrode Work Function by Changing Molecular Geometry of Conjugated Polymer Electrolytes and Application for Hole-Transporting Layer of Organic Optoelectronic Devices

ACS applied materials & interfaces, v.9 no.50, 2017년, pp.44060 - 44069  

Lee, Eui Jin (Convergence Research Center for Solar Energy, Daegu Gyeongbuk Institute of Science and Technology, 333, Techno Jungang daero, Dalseong-gun, Daegu 42988,) ,  Choi, Min Hee (Progressive Technology Research Group, KOLON Central Research Park, 30, Mabuk-ro 154beon-gil, Giheung-gu, Yongin-si 16910, Gyeonggi-do,) ,  Han, Yong Woon (Department of Materials Chemistry and Engineering, Konkuk University, 120, Neungdong-ro, Gwangjin-gu, Seoul 05029,) ,  Moon, Doo Kyung (Department of Materials Chemistry and Engineering, Konkuk University, 120, Neungdong-ro, Gwangjin-gu, Seoul 05029,)

Abstract AI-Helper 아이콘AI-Helper

In this study, we synthesized three conjugated polymer electrolytes (CPEs) with different conjugation lengths to control their dipole moments by varying spacers. P-type CPEs (PFT-D, PFtT-D, and PFbT-D) were generated by the facile oxidation of n-type CPEs (PFT, PFtT, and PFbT) and introduced as the ...

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참고문헌 (52)

  1. Forrest, S. R., Thompson, M. E.. Introduction: Organic Electronics and Optoelectronics. Chemical reviews, vol.107, no.4, 923-925.

  2. Xu, Youyong, Zhang, Fan, Feng, Xinliang. Patterning of Conjugated Polymers for Organic Optoelectronic Devices. Small, vol.7, no.10, 1338-1360.

  3. Choy, Wallace C. H., Chan, Wai Kin, Yuan, Yuping. Recent Advances in Transition Metal Complexes and Light‐Management Engineering in Organic Optoelectronic Devices. Advanced materials, vol.26, no.31, 5368-5399.

  4. Djuris˘Ić, A B, Chan, W K. Organic Optoelectronic Devices. HKIE Transactions, vol.11, no.2, 44-52.

  5. Cao, Weiran, Li, Jian, Chen, Hongzheng, Xue, Jiangeng. Transparent electrodes for organic optoelectronic devices: a review. Journal of photonics for energy, vol.4, no.1, 040990-.

  6. Hsieh, Chao-Hsiang, Cheng, Yen-Ju, Li, Pei-Jung, Chen, Chiu-Hsiang, Dubosc, Martin, Liang, Ru-Meng, Hsu, Chain-Shu. Highly Efficient and Stable Inverted Polymer Solar Cells Integrated with a Cross-Linked Fullerene Material as an Interlayer. Journal of the American Chemical Society, vol.132, no.13, 4887-4893.

  7. Chang, Yi-Ming, Leu, Chi-Yi. Conjugated polyelectrolyte and zinc oxide stacked structure as an interlayer in highly efficient and stable organic photovoltaic cells. Journal of materials chemistry. A, Materials for energy and sustainability, vol.1, no.21, 6446-.

  8. Wang, Fuzhi, Tan, Zhan'ao, Li, Yongfang. Solution-processable metal oxides/chelates as electrode buffer layers for efficient and stable polymer solar cells. Energy & environmental science, vol.8, no.4, 1059-1091.

  9. Nian, Li, Gao, Ke, Liu, Feng, Kan, Yuanyuan, Jiang, Xiaofang, Liu, Linlin, Xie, Zengqi, Peng, Xiaobin, Russell, Thomas P., Ma, Yuguang. 11% Efficient Ternary Organic Solar Cells with High Composition Tolerance via Integrated Near‐IR Sensitization and Interface Engineering. Advanced materials, vol.28, no.37, 8184-8190.

  10. Gaynor, Whitney, Hofmann, Simone, Christoforo, M. Greyson, Sachse, Christoph, Mehra, Saahil, Salleo, Alberto, McGehee, Michael D., Gather, Malte C., Lüssem, Björn, Müller‐Meskamp, Lars, Peumans, Peter, Leo, Karl. Color in the Corners: ITO‐Free White OLEDs with Angular Color Stability. Advanced materials, vol.25, no.29, 4006-4013.

  11. Nakanotani, Hajime, Higuchi, Takahiro, Furukawa, Taro, Masui, Kensuke, Morimoto, Kei, Numata, Masaki, Tanaka, Hiroyuki, Sagara, Yuta, Yasuda, Takuma, Adachi, Chihaya. High-efficiency organic light-emitting diodes with fluorescent emitters. Nature communications, vol.5, 4016-.

  12. Kang, Hongkyu, Kim, Geunjin, Kim, Junghwan, Kwon, Sooncheol, Kim, Heejoo, Lee, Kwanghee. Bulk‐Heterojunction Organic Solar Cells: Five Core Technologies for Their Commercialization. Advanced materials, vol.28, no.36, 7821-7861.

  13. Lee, Jong‐Hoon, Lee, Byoung Hoon, Jeong, Song Yi, Park, Sae Byeol, Kim, Geunjin, Lee, Seoung Ho, Lee, Kwanghee. Radical Cation-Anion Coupling‐Induced Work Function Tunability in Anionic Conjugated Polyelectrolytes. Advanced energy materials, vol.5, no.23, 1501292-.

  14. Lee, Byoung Hoon, Jung, In Hwan, Woo, Han Young, Shim, Hong‐Ku, Kim, Geunjin, Lee, Kwanghee. Multi‐Charged Conjugated Polyelectrolytes as a Versatile Work Function Modifier for Organic Electronic Devices. Advanced functional materials, vol.24, no.8, 1100-1108.

  15. Zilberberg, Kirill, Meyer, Jens, Riedl, Thomas. Solution processed metal-oxides for organic electronic devices. Journal of materials chemistry. C, Materials for optical and electronic devices, vol.1, no.32, 4796-.

  16. Kim, Kwang-Dae, Lim, Dong Chan, Hu, Jinhee, Kwon, Jung-Dae, Jeong, Myung-Geun, Seo, Hyun Ook, Lee, Joo Yul, Jang, Ka-Young, Lim, Jae-Hong, Lee, Kyu Hwan, Jeong, Yongsoo, Kim, Young Dok, Cho, Shinuk. Surface Modification of a ZnO Electron-Collecting Layer Using Atomic Layer Deposition to Fabricate High-Performing Inverted Organic Photovoltaics. ACS applied materials & interfaces, vol.5, no.17, 8718-8723.

  17. Heo, S.W., Lee, E.J., Seong, K.W., Moon, D.K.. Enhanced stability in polymer solar cells by controlling the electrode work function via modification of indium tin oxide. Solar energy materials and solar cells : an international journal devoted to photovoltaic, photothermal, and photochemical solar energy conversion, vol.115, 123-128.

  18. Choi, Hyosung, Park, Ji Sun, Jeong, Eunjae, Kim, Gi‐Hwan, Lee, Bo Ram, Kim, Sang Ouk, Song, Myoung Hoon, Woo, Han Young, Kim, Jin Young. Combination of Titanium Oxide and a Conjugated Polyelectrolyte for High‐Performance Inverted‐Type Organic Optoelectronic Devices. Advanced materials, vol.23, no.24, 2759-2763.

  19. Tan, Zhan'ao, Li, Shusheng, Wang, Fuzhi, Qian, Deping, Lin, Jun, Hou, Jianhui, Li, Yongfang. High performance polymer solar cells with as-prepared zirconium acetylacetonate film as cathode buffer layer. Scientific reports, vol.4, 4691-.

  20. Yang, L., Xu, H., Tian, H., Yin, S., Zhang, F.. Effect of cathode buffer layer on the stability of polymer bulk heterojunction solar cells. Solar energy materials and solar cells : an international journal devoted to photovoltaic, photothermal, and photochemical solar energy conversion, vol.94, no.10, 1831-1834.

  21. He, Zhicai, Zhong, Chengmei, Huang, Xun, Wong, Wai‐Yeung, Wu, Hongbin, Chen, Liwei, Su, Shijian, Cao, Yong. Simultaneous Enhancement of Open‐Circuit Voltage, Short‐Circuit Current Density, and Fill Factor in Polymer Solar Cells. Advanced materials, vol.23, no.40, 4636-4643.

  22. Song, H.J., Lee, E.J., Kim, D.H., Lee, T.H., Goh, M., Lee, S., Moon, D.K.. Solution-processed interlayer of discotic-based small molecules for organic photovoltaic devices: Enhancement of both the open-circuit voltage and the fill factor. Dyes and pigments : an international journal, vol.113, 210-218.

  23. Song, H.J., Lee, E.J., Kim, D.H., Moon, D.K., Lee, S.. Solution-processed interlayer of n-type small molecules for organic photovoltaic devices: Enhancement of the fill factor due to ordered orientation. Solar energy materials and solar cells : an international journal devoted to photovoltaic, photothermal, and photochemical solar energy conversion, vol.141, 232-239.

  24. Qiu, Weiming, Müller, Robert, Voroshazi, Eszter, Conings, Bert, Carleer, Robert, Boyen, Hans-Gerd, Turbiez, Mathieu, Froyen, Ludo, Heremans, Paul, Hadipour, Afshin. Nafion-Modified MoOx as Effective Room-Temperature Hole Injection Layer for Stable, High-Performance Inverted Organic Solar Cells. ACS applied materials & interfaces, vol.7, no.6, 3581-3589.

  25. Song, H.J., Shin, G.J., Choi, K.H., Lee, S., Moon, D.K.. White polymer light emitting diode materials introducing dendritic quinoxaline derivative: Synthesis, optical and electroluminescent properties. Synthetic metals, vol.190, 1-7.

  26. Vosgueritchian, Michael, Lipomi, Darren J., Bao, Zhenan. Highly Conductive and Transparent PEDOT:PSS Films with a Fluorosurfactant for Stretchable and Flexible Transparent Electrodes. Advanced functional materials, vol.22, no.2, 421-428.

  27. Kim, Youngmin, Ryu, Tae In, Ok, Ki‐Hoon, Kwak, Min‐Gi, Park, Sungmin, Park, Nam‐Gyu, Han, Chul Jong, Kim, Bong Soo, Ko, Min Jae, Son, Hae Jung, Kim, Jong‐Woong. Inverted Layer‐By‐Layer Fabrication of an Ultraflexible and Transparent Ag Nanowire/Conductive Polymer Composite Electrode for Use in High‐Performance Organic Solar Cells. Advanced functional materials, vol.25, no.29, 4580-4589.

  28. Jeon, Ye-Jin, Lee, Sehyun, Kang, Rira, Kim, Jueng-Eun, Yeo, Jun-Seok, Lee, Seung-Hoon, Kim, Seok-Soon, Yun, Jin-Mun, Kim, Dong-Yu. Planar heterojunction perovskite solar cells with superior reproducibility. Scientific reports, vol.4, 6953-.

  29. Zilberberg, Kirill, Gharbi, Houssem, Behrendt, Andreas, Trost, Sara, Riedl, Thomas. Low-Temperature, Solution-ProcessedMoOx for Efficient and Stable OrganicSolar Cells. ACS applied materials & interfaces, vol.4, no.3, 1164-1168.

  30. Steirer, K. Xerxes, Ndione, Paul F., Widjonarko, N. Edwin, Lloyd, Matthew T., Meyer, Jens, Ratcliff, Erin L., Kahn, Antoine, Armstrong, Neal R., Curtis, Calvin J., Ginley, David S., Berry, Joseph J., Olson, Dana C.. Enhanced Efficiency in Plastic Solar Cells via Energy Matched Solution Processed NiOx Interlayers. Advanced energy materials, vol.1, no.5, 813-820.

  31. Qiu, Meng, Zhu, Dangqiang, Bao, Xichang, Wang, Junyi, Wang, Xuefei, Yang, Renqiang. WO3 with surface oxygen vacancies as an anode buffer layer for high performance polymer solar cells. Journal of materials chemistry. A, Materials for energy and sustainability, vol.4, no.3, 894-900.

  32. Zhou, Huiqiong, Zhang, Yuan, Mai, Cheng‐Kang, Collins, Samuel D., Nguyen, Thuc‐Quyen, Bazan, Guillermo C., Heeger, Alan J.. Conductive Conjugated Polyelectrolyte as Hole‐Transporting Layer for Organic Bulk Heterojunction Solar Cells. Advanced materials, vol.26, no.5, 780-785.

  33. Lee, Byoung Hoon, Lee, Jong‐Hoon, Jeong, Song Yi, Park, Sae Byeol, Lee, Seoung Ho, Lee, Kwanghee. Broad Work‐Function Tunability of p‐Type Conjugated Polyelectrolytes for Efficient Organic Solar Cells. Advanced energy materials, vol.5, no.5, 1401653-.

  34. Choi, Min-Hee, Lee, Eui Jin, Han, Jae Pil, Moon, Doo Kyung. Solution-processed pH-neutral conjugated polyelectrolytes with one-atom variation (O, S, Se) as a novel hole-collecting layer in organic photovoltaics. Solar energy materials and solar cells : an international journal devoted to photovoltaic, photothermal, and photochemical solar energy conversion, vol.155, 243-252.

  35. Liu, Huimin, Huang, Liqiang, Cheng, Xiaofang, Hu, Aifeng, Xu, Haitao, Chen, Lie, Chen, Yiwang. N-type Self-Doping of Fluorinate Conjugated Polyelectrolytes for Polymer Solar Cells: Modulation of Dipole, Morphology, and Conductivity. ACS applied materials & interfaces, vol.9, no.1, 1145-1153.

  36. Jung, Jae Woong, Lee, Jea Uk, Jo, Won Ho. High-Efficiency Polymer Solar Cells with Water-Soluble and Self-Doped Conducting Polyaniline Graft Copolymer as Hole Transport Layer. The journal of physical chemistry. C, Nanomaterials and Interfaces, vol.114, no.1, 633-637.

  37. Xue, Yuyuan, Guo, Peipei, Yip, Hin-Lap, Li, Yuan, Cao, Yong. General design of self-doped small molecules as efficient hole extraction materials for polymer solar cells. Journal of materials chemistry. A, Materials for energy and sustainability, vol.5, no.8, 3780-3785.

  38. Yin, Xiaojun, Xie, Guohua, Peng, Yuhao, Wang, Bowen, Chen, Tianhao, Li, Shuqi, Zhang, Wenhao, Wang, Lei, Yang, Chuluo. Self‐Doping Cathode Interfacial Material Simultaneously Enabling High Electron Mobility and Powerful Work Function Tunability for High‐Efficiency All‐Solution‐Processed Polymer Light‐Emitting Diodes. Advanced functional materials, vol.27, no.26, 1700695-.

  39. Lee, Eui Jin, Heo, Soo Won, Han, Yong Woon, Moon, Doo Kyung. An organic-inorganic hybrid interlayer for improved electron extraction in inverted polymer solar cells. Journal of materials chemistry. C, Materials for optical and electronic devices, vol.4, no.13, 2463-2469.

  40. Lee, Byoung Hoon, Lee, Jong‐Hoon, Jeong, Song Yi, Park, Sae Byeol, Lee, Seoung Ho, Lee, Kwanghee. Broad Work‐Function Tunability of p‐Type Conjugated Polyelectrolytes for Efficient Organic Solar Cells. Advanced energy materials, vol.5, no.5, 1401653-.

  41. Lee, Eui Jin, Han, Jae Pil, Jung, Seung Eun, Choi, Min Hee, Moon, Doo Kyung. Improvement in Half-Life of Organic Solar Cells by Using a Blended Hole Extraction Layer Consisting of PEDOT:PSS and Conjugated Polymer Electrolyte. ACS applied materials & interfaces, vol.8, no.46, 31791-31798.

  42. Fang, Junfeng, Wallikewitz, Bodo H., Gao, Feng, Tu, Guoli, Müller, Christian, Pace, Giuseppina, Friend, Richard H., Huck, Wilhelm T. S.. Conjugated Zwitterionic Polyelectrolyte as the Charge Injection Layer for High-Performance Polymer Light-Emitting Diodes. Journal of the American Chemical Society, vol.133, no.4, 683-685.

  43. Lee, Byoung Hoon, Lee, Jong‐Hoon, Jeong, Song Yi, Park, Sae Byeol, Lee, Seoung Ho, Lee, Kwanghee. Broad Work‐Function Tunability of p‐Type Conjugated Polyelectrolytes for Efficient Organic Solar Cells. Advanced energy materials, vol.5, no.5, 1401653-.

  44. Jo, Jea Woong, Jung, Jae Woong, Bae, Seunghwan, Ko, Min Jae, Kim, Heesuk, Jo, Won Ho, Jen, Alex K.‐Y., Son, Hae Jung. Development of Self‐Doped Conjugated Polyelectrolytes with Controlled Work Functions and Application to Hole Transport Layer Materials for High‐Performance Organic Solar Cells. Advanced materials interfaces, vol.3, no.12, 1500703-.

  45. Furukawa, Y.. Electronic Absorption and Vibrational Spectroscopies of Conjugated Conducting Polymers. The Journal of physical chemistry, vol.100, no.39, 15644-15653.

  46. Liu, Feng, Page, Zachariah A., Duzhko, Volodimyr V., Russell, Thomas P., Emrick, Todd. Conjugated Polymeric Zwitterions as Efficient Interlayers in Organic Solar Cells. Advanced materials, vol.25, no.47, 6868-6873.

  47. Chen, Lie, Xie, Chen, Chen, Yiwang. Self-Assembled Conjugated Polyelectrolyte–Ionic Liquid Crystal Complex as an Interlayer for Polymer Solar Cells: Achieving Performance Enhancement via Rapid Liquid Crystal-Induced Dipole Orientation. Macromolecules, vol.47, no.5, 1623-1632.

  48. Shamjid, P, Anjusree, S, Yoosuf Ameen, M, Reddy, V S. Performance enhancement of polymer solar cells by incorporating Ag nanoparticles at an indium tin oxide/MoO3 buffer layer interface. Semiconductor science and technology, vol.32, no.6, 065010-.

  49. Elumalai, Naveen Kumar, Uddin, Ashraf. Open circuit voltage of organic solar cells: an in-depth review. Energy & environmental science, vol.9, no.2, 391-410.

  50. Lee, Eui Jin, Heo, Soo Won, Han, Yong Woon, Moon, Doo Kyung. An organic-inorganic hybrid interlayer for improved electron extraction in inverted polymer solar cells. Journal of materials chemistry. C, Materials for optical and electronic devices, vol.4, no.13, 2463-2469.

  51. Earmme, Taeshik, Jenekhe, Samson A.. High-performance multilayered phosphorescent OLEDs by solution-processed commercial electron-transport materials. Journal of materials chemistry, vol.22, no.11, 4660-4668.

  52. Yin, Zhigang, Zheng, Qingdong, Chen, Shan‐Ci, Cai, Dongdong, Zhou, Lingyu, Zhang, Jian. Bandgap Tunable Zn1‐xMgxO Thin Films as Highly Transparent Cathode Buffer Layers for High‐Performance Inverted Polymer Solar Cells. Advanced energy materials, vol.4, no.7, 1301404-.

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