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Structural Insight into Aggregation and Orientation of TPD-Based Conjugated Polymers for Efficient Charge-Transporting Properties

Chemistry of materials : a publication of the American Chemical Society, v.31 no.13, 2019년, pp.4629 - 4638  

Lim, Dae-Hee (School of Materials Science and Engineering, Heeger Center for Advanced Materials (HCAM) , Gwangju Institute of Science and Technology (GIST) , Gwangju 61005 , South Korea) ,  Kim, Yeon-Ju (School of Materials Science and Engineering, Heeger Center for Advanced Materials (HCAM) , Gwangju Institute of Science and Technology (GIST) , Gwangju 61005 , South Korea) ,  Kim, Yeong-A (School of Materials Science and Engineering, Heeger Center for Advanced Materials (HCAM) , Gwangju Institute of Science and Technology (GIST) , Gwangju 61005 , South Korea) ,  Hwang, Kyoungtae (School of Materials Science and Engineering, Heeger Center for Advanced Materials (HCAM) , Gwangju Institute of Science and Technology (GIST) , Gwangju 61005 , South Korea) ,  Park, Jong-Jin (School of Materials Science and Engineering, Heeger Center for Advanced Materials (HCAM) , Gwangju Institute of Science and Technology (GIST) , Gwangju 61005 , South Korea Kim, Dong-Yu

Abstract AI-Helper 아이콘AI-Helper

In this study, we obtained a new structural insight into the charge-transporting properties in TPD-based polymers that cannot be solely explained in terms of the type of orientation. We synthesized two types of copolymers comprising mono-TPD or bis-TPD as the accepting unit. Although the planarity a...

참고문헌 (48)

  1. Oh, Jin Young, Rondeau-Gagné, Simon, Chiu, Yu-Cheng, Chortos, Alex, Lissel, Franziska, Wang, Ging-Ji Nathan, Schroeder, Bob C., Kurosawa, Tadanori, Lopez, Jeffrey, Katsumata, Toru, Xu, Jie, Zhu, Chenxin, Gu, Xiaodan, Bae, Won-Gyu, Kim, Yeongin, Jin, Lihua, Chung, Jong Won, Tok, Jeffrey B.-H., Bao, Zhenan. Intrinsically stretchable and healable semiconducting polymer for organic transistors. Nature, vol.539, no.7629, 411-415.

  2. Wang, Sihong, Xu, Jie, Wang, Weichen, Wang, Ging-Ji Nathan, Rastak, Reza, Molina-Lopez, Francisco, Chung, Jong Won, Niu, Simiao, Feig, Vivian R., Lopez, Jeffery, Lei, Ting, Kwon, Soon-Ki, Kim, Yeongin, Foudeh, Amir M., Ehrlich, Anatol, Gasperini, Andrea, Yun, Youngjun, Murmann, Boris, Tok, Jeffery B.-H., Bao, Zhenan. Skin electronics from scalable fabrication of an intrinsically stretchable transistor array. Nature, vol.555, no.7694, 83-88.

  3. Park, Sungjun, Fukuda, Kenjiro, Wang, Ming, Lee, Chulhyo, Yokota, Tomoyuki, Jin, Hanbit, Jinno, Hiroaki, Kimura, Hiroki, Zalar, Peter, Matsuhisa, Naoji, Umezu, Shinjiro, Bazan, Guillermo C., Someya, Takao. Ultraflexible Near‐Infrared Organic Photodetectors for Conformal Photoplethysmogram Sensors. Advanced materials, vol.30, no.34, 1802359-.

  4. Kim, Gyoungsik, Kang, Seok-Ju, Dutta, Gitish K., Han, Young-Kyu, Shin, Tae Joo, Noh, Yong-Young, Yang, Changduk. A Thienoisoindigo-Naphthalene Polymer with Ultrahigh Mobility of 14.4 cm2/V·s That Substantially Exceeds Benchmark Values for Amorphous Silicon Semiconductors. Journal of the American Chemical Society, vol.136, no.26, 9477-9483.

  5. Back, Jang Yeol, Yu, Hojeong, Song, Inho, Kang, Il, Ahn, Hyungju, Shin, Tae Joo, Kwon, Soon-Ki, Oh, Joon Hak, Kim, Yun-Hi. Investigation of Structure–Property Relationships in Diketopyrrolopyrrole-Based Polymer Semiconductors via Side-Chain Engineering. Chemistry of materials : a publication of the American Chemical Society, vol.27, no.5, 1732-1739.

  6. Zhao, Zhiyuan, Yin, Zhihong, Chen, Huajie, Zheng, Liping, Zhu, Chunguang, Zhang, Long, Tan, Songting, Wang, Hanlin, Guo, Yunlong, Tang, Qingxin, Liu, Yunqi. High‐Performance, Air‐Stable Field‐Effect Transistors Based on Heteroatom‐Substituted Naphthalenediimide‐Benzothiadiazole Copolymers Exhibiting Ultrahigh Electron Mobility up to 8.5 cm V−1 s−1. Advanced materials, vol.29, no.4, 1602410-.

  7. Wang, Zhijie, Liu, Zitong, Ning, Lu, Xiao, Mingfei, Yi, Yuanping, Cai, Zhengxu, Sadhanala, Aditya, Zhang, Guanxin, Chen, Wei, Sirringhaus, Henning, Zhang, Deqing. Charge Mobility Enhancement for Conjugated DPP-Selenophene Polymer by Simply Replacing One Bulky Branching Alkyl Chain with Linear One at Each DPP Unit. Chemistry of materials : a publication of the American Chemical Society, vol.30, no.9, 3090-3100.

  8. Park, Sangsik, Lee, Moo Hyung, Ahn, Kwang Seok, Choi, Hyun Ho, Shin, Jihye, Xu, Jie, Mei, Jianguo, Cho, Kilwon, Bao, Zhenan, Lee, Dong Ryeol, Kang, Moon Sung, Kim, Do Hwan. Combinatorial Study of Temperature‐Dependent Nanostructure and Electrical Conduction of Polymer Semiconductors: Even Bimodal Orientation Can Enhance 3D Charge Transport. Advanced functional materials, vol.26, no.26, 4627-4634.

  9. Kang, So-Huei, Lee, Hae Rang, Dutta, Gitish K., Lee, Junghoon, Oh, Joon Hak, Yang, Changduk. A Role of Side-Chain Regiochemistry of Thienylene–Vinylene–Thienylene (TVT) in the Transistor Performance of Isomeric Polymers. Macromolecules, vol.50, no.3, 884-890.

  10. Schroeder, Bob C., Kurosawa, Tadanori, Fu, Tianren, Chiu, Yu‐Cheng, Mun, Jaewan, Wang, Ging‐Ji Nathan, Gu, Xiaodan, Shaw, Leo, Kneller, James W. E., Kreouzis, Theo, Toney, Michael F., Bao, Zhenan. Taming Charge Transport in Semiconducting Polymers with Branched Alkyl Side Chains. Advanced functional materials, vol.27, no.34, 1701973-.

  11. Wang, Yang, Hasegawa, Tsukasa, Matsumoto, Hidetoshi, Mori, Takehiko, Michinobu, Tsuyoshi. High‐Performance n‐Channel Organic Transistors Using High‐Molecular‐Weight Electron‐Deficient Copolymers and Amine‐Tailed Self‐Assembled Monolayers. Advanced materials, vol.30, no.13, 1707164-.

  12. Kim, Nam-Koo, Jang, Soo-Young, Pace, Giuseppina, Caironi, Mario, Park, Won-Tae, Khim, Dongyoon, Kim, Juhwan, Kim, Dong-Yu, Noh, Yong-Young. High-Performance Organic Field-Effect Transistors with Directionally Aligned Conjugated Polymer Film Deposited from Pre-Aggregated Solution. Chemistry of materials : a publication of the American Chemical Society, vol.27, no.24, 8345-8353.

  13. Zheng, Yu‐Qing, Yao, Ze‐Fan, Lei, Ting, Dou, Jin‐Hu, Yang, Chi‐Yuan, Zou, Lin, Meng, Xiangyi, Ma, Wei, Wang, Jie‐Yu, Pei, Jian. Unraveling the Solution‐State Supramolecular Structures of Donor–Acceptor Polymers and their Influence on Solid‐State Morphology and Charge‐Transport Properties. Advanced materials, vol.29, no.42, 1701072-.

  14. Khim, Dongyoon, Luzio, Alessandro, Bonacchini, Giorgio Ernesto, Pace, Giuseppina, Lee, Mi‐Jung, Noh, Yong‐Young, Caironi, Mario. Uniaxial Alignment of Conjugated Polymer Films for High‐Performance Organic Field‐Effect Transistors. Advanced materials, vol.30, no.20, 1705463-.

  15. Zou, Yingping, Najari, Ahmed, Berrouard, Philippe, Beaupré, Serge, Réda Aïch, Badrou, Tao, Ye, Leclerc, Mario. A Thieno[3,4-c]pyrrole-4,6-dione-Based Copolymer for Efficient Solar Cells. Journal of the American Chemical Society, vol.132, no.15, 5330-5331.

  16. Chen, Guan-Yu, Cheng, Yu-Hsin, Chou, Yi-Jen, Su, Ming-Shin, Chen, Chia-Min, Wei, Kung-Hwa. Crystalline conjugated polymer containing fused 2,5-di(thiophen-2-yl)thieno[2,3-b]thiophene and thieno[3,4-c]pyrrole-4,6-dione units for bulk heterojunction solar cells. Chemical communications : Chem comm, vol.47, no.17, 5064-5066.

  17. Chu, Ta-Ya, Lu, Jianping, Beaupré, Serge, Zhang, Yanguang, Pouliot, Jean-Rémi, Wakim, Salem, Zhou, Jiayun, Leclerc, Mario, Li, Zhao, Ding, Jianfu, Tao, Ye. Bulk Heterojunction Solar Cells Using Thieno[3,4-c]pyrrole-4,6-dione and Dithieno[3,2-b:2′,3′-d]silole Copolymer with a Power Conversion Efficiency of 7.3%. Journal of the American Chemical Society, vol.133, no.12, 4250-4253.

  18. Guo, Xugang, Ortiz, Rocio Ponce, Zheng, Yan, Kim, Myung-Gil, Zhang, Shiming, Hu, Yan, Lu, Gang, Facchetti, Antonio, Marks, Tobin J.. Thieno[3,4-c]pyrrole-4,6-dione-Based Polymer Semiconductors: Toward High-Performance, Air-Stable Organic Thin-Film Transistors. Journal of the American Chemical Society, vol.133, no.34, 13685-13697.

  19. Wu, Qinghe, Wang, Mao, Qiao, Xiaolan, Xiong, Yu, Huang, Yangguang, Gao, Xike, Li, Hongxiang. Thieno[3,4-c]pyrrole-4,6-dione Containing Copolymers for High Performance Field-Effect Transistors. Macromolecules, vol.46, no.10, 3887-3894.

  20. Weller, Tina, Rundel, Kira, Krauss, Gert, McNeill, Christopher R., Thelakkat, Mukundan. Highly Efficient and Balanced Charge Transport in Thieno[3,4-c]pyrrole-4,6-dione Copolymers: Dramatic Influence of Thieno[3,2-b]thiophene Comonomer on Alignment and Charge Transport. The journal of physical chemistry. C, Nanomaterials and Interfaces, vol.122, no.14, 7565-7574.

  21. Xu, Xiaofeng, Li, Zhaojun, Zhang, Wei, Meng, Xiangyi, Zou, Xianshao, Di Carlo Rasi, Dario, Ma, Wei, Yartsev, Arkady, Andersson, Mats R., Janssen, René A. J., Wang, Ergang. 8.0% Efficient All‐Polymer Solar Cells with High Photovoltage of 1.1 V and Internal Quantum Efficiency near Unity. Advanced energy materials, vol.8, no.1, 1700908-.

  22. Pankow, Robert M., Munteanu, John D., Thompson, Barry C.. Influence of the aryl spacer in 2,5-dialkoxyphenylene and diaryl substituted thieno[3,4-c]pyrrole-4,6-dione copolymers. Journal of materials chemistry. C, Materials for optical and electronic devices, vol.6, no.22, 5992-5998.

  23. Donaghey, Jenny E., Ashraf, Raja Shahid, Kim, Youngju, Huang, Zheng Gang, Nielsen, Christian B., Zhang, Weimin, Schroeder, Bob, Grenier, Christophe R. G., Brown, Christopher T., D'Angelo, Pasquale, Smith, Jeremy, Watkins, Scott, Song, Kigook, Anthopoulos, Thomas D., Durrant, James R., Williams, Charlotte K., McCulloch, Iain. Pyrroloindacenodithiophene containing polymers for organic field effect transistors and organic photovoltaics. Journal of materials chemistry, vol.21, no.46, 18744-18752.

  24. Pouliot, Jean‐Rémi, Mercier, Lauren G., Caron, Samuel, Leclerc, Mario. Accessing New DPP‐Based Copolymers by Direct Heteroarylation Polymerization. Macromolecular chemistry and physics, vol.214, no.4, 453-457.

  25. Qiao, Xiaolan, Wu, Qinghe, Wu, Hongzhuo, Wang, Deliang, Li, Hongxiang. High performance thin film transistors based on bi-thieno[3,4-c]pyrrole-4,6-dione-containing copolymers: tuning the face-on and edge-on packing orientations. Polymer chemistry, vol.7, no.4, 807-815.

  26. Qiao, Xiaolan, Wu, Qinghe, Wu, Hongzhuo, Zhang, Jidong, Li, Hongxiang. Bithienopyrroledione‐Based Copolymers, Versatile Semiconductors for Balanced Ambipolar Thin‐Film Transistors and Organic Solar Cells with Voc > 1 V. Advanced functional materials, vol.27, no.4, 1604286-.

  27. Zhang, Shiqian, Qiao, Xiaolan, Xiong, Yu, Wu, Qinghe, Liu, Zhiqiang, Li, Hongxiang, Fang, Qi. Bi-thieno[3,4]pyrrole-4,6-dione based copolymers: 1,2-Bis(2-thienyl)ethene unit vs 1,2-diphenylethene unit. Organic electronics, vol.56, 146-151.

  28. Berrouard, Philippe, Grenier, François, Pouliot, Jean-Rémi, Gagnon, Eric, Tessier, Christian, Leclerc, Mario. Synthesis and Characterization of 5-Octylthieno[3,4-c]pyrrole-4,6-dione Derivatives As New Monomers for Conjugated Copolymers. Organic letters, vol.13, no.1, 38-41.

  29. Lim, Dae-Hee, Jang, Soo-Young, Kang, Minji, Lee, Sehyun, Kim, Yeong-A, Heo, Youn-Jung, Lee, Min-Hye, Kim, Dong-Yu. A systematic study on molecular planarity and D-A conformation in thiazolothiazole- and thienylenevinylene-based copolymers for organic field-effect transistors. Journal of materials chemistry. C, Materials for optical and electronic devices, vol.5, no.39, 10126-10132.

  30. Hestand, Nicholas J., Spano, Frank C.. Expanded Theory of H- and J-Molecular Aggregates: The Effects of Vibronic Coupling and Intermolecular Charge Transfer. Chemical reviews, vol.118, no.15, 7069-7163.

  31. Cai, Kang, Xie, Jiajun, Zhang, Di, Shi, Wenjing, Yan, Qifan, Zhao, Dahui. Concurrent Cooperative J-Aggregates and Anticooperative H-Aggregates. Journal of the American Chemical Society, vol.140, no.17, 5764-5773.

  32. Spano, Frank C.. The Spectral Signatures of Frenkel Polarons in H- and J-Aggregates. Accounts of chemical research, vol.43, no.3, 429-439.

  33. Kasha, M., Rawls, H. R., Ashraf El-Bayoumi, M.. The exciton model in molecular spectroscopy. Pure and applied chemistry. : Chimie pure et appliqueé, vol.11, no.3, 371-392.

  34. Zhou, J.D., Zhang, W.Q., Liu, L.L., Xie, Z.Q., Ma, Y.G.. Aggregation structures of organic conjugated molecules on their optoelectronic properties. Chinese chemical letters = 中國化學快報, vol.27, no.8, 1350-1356.

  35. Brixner, Tobias, Hildner, Richard, Köhler, Jürgen, Lambert, Christoph, Würthner, Frank. Exciton Transport in Molecular Aggregates - From Natural Antennas to Synthetic Chromophore Systems. Advanced energy materials, vol.7, no.16, 1700236-.

  36. Spano, Frank C., Silva, Carlos. H- and J-Aggregate Behavior in Polymeric Semiconductors. Annual review of physical chemistry, vol.65, 477-500.

  37. Wang, Yi Jia, Li, Zeyu, Tong, Jiaqi, Shen, Xiao Yuan, Qin, Anjun, Sun, Jing Zhi, Tang, Ben Zhong. The fluorescence properties and aggregation behavior of tetraphenylethene-perylenebisimide dyads. Journal of materials chemistry. C, Materials for optical and electronic devices, vol.3, no.15, 3559-3568.

  38. Araya-Hermosilla, R., Araya-Hermosilla, E., Torres-Gallegos, C., Alarcon-Alarcon, C., Moreno-Villoslada, I.. Sensing Cu2+ by controlling the aggregation properties of the fluorescent dye rhodamine 6G with the aid of polyelectrolytes bearing different linear aromatic density. Reactive & functional polymers, vol.73, no.11, 1455-1463.

  39. Terdale, S., Tantray, A.. Spectroscopic study of the dimerization of rhodamine 6G in water and different organic solvents. Journal of molecular liquids, vol.225, 662-671.

  40. Zhang, Jibo, Xu, Bin, Chen, Jinlong, Ma, Suqian, Dong, Yujie, Wang, Lijuan, Li, Bao, Ye, Ling, Tian, Wenjing. An Organic Luminescent Molecule: What Will Happen When the “Butterflies” Come Together?. Advanced materials, vol.26, no.5, 739-745.

  41. Xie, Zongliang, Chen, Chengjian, Xu, Shidang, Li, Jun, Zhang, Yi, Liu, Siwei, Xu, Jiarui, Chi, Zhenguo. White‐Light Emission Strategy of a Single Organic Compound with Aggregation‐Induced Emission and Delayed Fluorescence Properties. Angewandte Chemie. international edition, vol.54, no.24, 7181-7184.

  42. Zhou, Chenkun, Tian, Yu, Yuan, Zhao, Han, Mingu, Wang, Jamie, Zhu, Lei, Tameh, Maliheh Shaban, Huang, Chen, Ma, Biwu. Precise Design of Phosphorescent Molecular Butterflies with Tunable Photoinduced Structural Change and Dual Emission. Angewandte Chemie. international edition, vol.54, no.33, 9591-9595.

  43. Xu, Bingjia, Mu, Yingxiao, Mao, Zhu, Xie, Zongliang, Wu, Haozhong, Zhang, Yi, Jin, Chongjun, Chi, Zhenguo, Liu, Siwei, Xu, Jiarui, Wu, Yuan-Chun, Lu, Po-Yen, Lien, Alan, Bryce, Martin R.. Achieving remarkable mechanochromism and white-light emission with thermally activated delayed fluorescence through the molecular heredity principle. Chemical science, vol.7, no.3, 2201-2206.

  44. DeLongchamp, Dean M., Kline, R. Joseph, Fischer, Daniel A., Richter, Lee J., Toney, Michael F.. Molecular Characterization of Organic Electronic Films. Advanced materials, vol.23, no.3, 319-337.

  45. Rivnay, Jonathan, Mannsfeld, Stefan C. B., Miller, Chad E., Salleo, Alberto, Toney, Michael F.. Quantitative Determination of Organic Semiconductor Microstructure from the Molecular to Device Scale. Chemical reviews, vol.112, no.10, 5488-5519.

  46. Xie, Z., Yang, B., Li, F., Cheng, G., Liu, L., Yang, G., Xu, H., Ye, L., Hanif, M., Liu, S., Ma, D., Ma, Y.. Cross Dipole Stacking in the Crystal of Distyrylbenzene Derivative: The Approach toward High Solid-State Luminescence Efficiency. Journal of the American Chemical Society, vol.127, no.41, 14152-14153.

  47. Kim, Hee Su, Long, Dang, Noh, Yong-Young, Hwang, Do-Hoon. Effect of donor units in methylated DPP-based polymers on performance of organic field-effect transistors. Journal of materials chemistry. C, Materials for optical and electronic devices, vol.6, no.39, 10464-10471.

  48. Lee, Min-Hye, Kim, Juhwan, Kang, Minji, Kim, Jihong, Kang, Boseok, Hwang, Hansu, Cho, Kilwon, Kim, Dong-Yu. Precise Side-Chain Engineering of Thienylenevinylene–Benzotriazole-Based Conjugated Polymers with Coplanar Backbone for Organic Field Effect Transistors and CMOS-like Inverters. ACS applied materials & interfaces, vol.9, no.3, 2758-2766.

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