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NTIS 바로가기Macromolecules, v.54 no.15, 2021년, pp.7102 - 7112
Lee, Seungjin (Department of Chemical and Biomolecular Engineering , Korea Advanced Institute of Science and Technology (KAIST) , Daejeon 34141 , Republic of Korea) , Kim, Youngwoong (Department of Chemical and Biomolecular Engineering , Korea Advanced Institute of Science and Technology (KAIST) , Daejeon 34141 , Republic of Korea) , Kim, Donguk (Department of Chemical and Biomolecular Engineering , Korea Advanced Institute of Science and Technology (KAIST) , Daejeon 34141 , Republic of Korea) , Jeong, Dahyun (Department of Chemical and Biomolecular Engineering , Korea Advanced Institute of Science and Technology (KAIST) , Daejeon 34141 , Republic of Korea) , Kim, Geon-U (Department of Chemical and Biomolecular Engineering , Korea Advanced Institute of Science and Technology (KAIST) , Daejeon 34141 , Republic of Korea) , Kim, Jinseck (Department of Chemical and Biomolecular Engineering , K) , Kim, Bumjoon J.
Interlayers in organic solar cells (OSCs) play a crucial role in determining their charge extraction properties, device performance, and stability. In this work, two naphthalene diimide (NDI)-based n-type polymers (P(NDIDEG-T) and P(NDITEG-T)) incorporating oligo(ethylene glycol) (OEG) side chains o...
Berny, Stephane, Blouin, Nicolas, Distler, Andreas, Egelhaaf, Hans‐Joachim, Krompiec, Michal, Lohr, Andreas, Lozman, Owen R., Morse, Graham E., Nanson, Lana, Pron, Agnieszka, Sauermann, Tobias, Seidler, Nico, Tierney, Steve, Tiwana, Priti, Wagner, Michael, Wilson, Henry. Solar Trees: First Large‐Scale Demonstration of Fully Solution Coated, Semitransparent, Flexible Organic Photovoltaic Modules. Advanced science, vol.3, no.5, 1500342-.
Kim, Taesu, Kim, Jae-Han, Kang, Tae Eui, Lee, Changyeon, Kang, Hyunbum, Shin, Minkwan, Wang, Cheng, Ma, Biwu, Jeong, Unyong, Kim, Taek-Soo, Kim, Bumjoon J.. Flexible, highly efficient all-polymer solar cells. Nature communications, vol.6, 8547-.
Cui, Yong, Yao, Huifeng, Zhang, Jianqi, Xian, Kaihu, Zhang, Tao, Hong, Ling, Wang, Yuming, Xu, Ye, Ma, Kangqiao, An, Cunbin, He, Chang, Wei, Zhixiang, Gao, Feng, Hou, Jianhui. Single‐Junction Organic Photovoltaic Cells with Approaching 18% Efficiency. Advanced materials, vol.32, no.19, 1908205-.
Zhu, Can, Yuan, Jun, Cai, Fangfang, Meng, Lei, Zhang, Huotian, Chen, Honggang, Li, Jing, Qiu, Beibei, Peng, Hongjian, Chen, Shanshan, Hu, Yunbin, Yang, Changduk, Gao, Feng, Zou, Yingping, Li, Yongfang. Tuning the electron-deficient core of a non-fullerene acceptor to achieve over 17% efficiency in a single-junction organic solar cell. Energy & environmental science, vol.13, no.8, 2459-2466.
Hou, Jianhui, Inganäs, Olle, Friend, Richard H., Gao, Feng. Organic solar cells based on non-fullerene acceptors. Nature materials, vol.17, no.2, 119-128.
Lee, Changyeon, Lee, Seungjin, Kim, Geon-U, Lee, Wonho, Kim, Bumjoon J.. Recent Advances, Design Guidelines, and Prospects of All-Polymer Solar Cells. Chemical reviews, vol.119, no.13, 8028-8086.
Yu, Han, Pan, Mingao, Sun, Rui, Agunawela, Indunil, Zhang, Jianquan, Li, Yuhao, Qi, Zhenyu, Han, Han, Zou, Xinhui, Zhou, Wentao, Chen, Shangshang, Lai, Joshua Yuk Lin, Luo, Siwei, Luo, Zhenghui, Zhao, Dahui, Lu, Xinhui, Ade, Harald, Huang, Fei, Min, Jie, Yan, He. Regio‐Regular Polymer Acceptors Enabled by Determined Fluorination on End Groups for All‐Polymer Solar Cells with 15.2 % Efficiency. Angewandte Chemie. international edition, vol.60, no.18, 10137-10146.
Li, Yongfang. Molecular Design of Photovoltaic Materials for Polymer Solar Cells: Toward Suitable Electronic Energy Levels and Broad Absorption. Accounts of chemical research, vol.45, no.5, 723-733.
Luo, Zhenghui, Liu, Tao, Ma, Ruijie, Xiao, Yiqun, Zhan, Lingling, Zhang, Guangye, Sun, Huiliang, Ni, Fan, Chai, Gaoda, Wang, Junwei, Zhong, Cheng, Zou, Yang, Guo, Xugang, Lu, Xinhui, Chen, Hongzheng, Yan, He, Yang, Chuluo. Precisely Controlling the Position of Bromine on the End Group Enables Well‐Regular Polymer Acceptors for All‐Polymer Solar Cells with Efficiencies over 15%. Advanced materials, vol.32, no.48, 2005942-.
Sun, Huiliang, Yu, Han, Shi, Yongqiang, Yu, Jianwei, Peng, Zhongxiang, Zhang, Xianhe, Liu, Bin, Wang, Junwei, Singh, Ranbir, Lee, Jaewon, Li, Yongchun, Wei, Zixiang, Liao, Qiaogan, Kan, Zhipeng, Ye, Long, Yan, He, Gao, Feng, Guo, Xugang. A Narrow‐Bandgap n‐Type Polymer with an Acceptor–Acceptor Backbone Enabling Efficient All‐Polymer Solar Cells. Advanced materials, vol.32, no.43, 2004183-.
Chang, Shao-Ling, Cao, Fong-Yi, Huang, Wen-Chia, Huang, Po-Kai, Huang, Kuo-Hsiu, Hsu, Chain-Shu, Cheng, Yen-Ju. New Thieno[3,2-b]thiophene-Based Acceptor: Tuning Acceptor Strength of Ladder-Type N-Type Materials to Simultaneously Achieve Enhanced Voc and Jsc of Nonfullerene Solar Cells. ACS energy letters, vol.3, 1722-1729.
Kolhe, Nagesh B., Tran, Duyen K., Lee, Hyunjong, Kuzuhara, Daiki, Yoshimoto, Noriyuki, Koganezawa, Tomoyuki, Jenekhe, Samson A.. New Random Copolymer Acceptors Enable Additive-Free Processing of 10.1% Efficient All-Polymer Solar Cells with Near-Unity Internal Quantum Efficiency. ACS energy letters, vol.4, 1162-1170.
Zhao, Ruyan, Wang, Ning, Yu, Yingjian, Liu, Jun. Organoboron Polymer for 10% Efficiency All-Polymer Solar Cells. Chemistry of materials : a publication of the American Chemical Society, vol.32, no.3, 1308-1314.
Guo, Yikun, Li, Yunke, Awartani, Omar, Han, Han, Zhao, Jingbo, Ade, Harald, Yan, He, Zhao, Dahui. Improved Performance of All‐Polymer Solar Cells Enabled by Naphthodiperylenetetraimide‐Based Polymer Acceptor. Advanced materials, vol.29, no.26, 1700309-.
Li, Zhaojun, Xu, Xiaofeng, Zhang, Wei, Meng, Xiangyi, Ma, Wei, Yartsev, Arkady, Inganäs, Olle, Andersson, Mats. R., Janssen, René A. J., Wang, Ergang. High Performance All-Polymer Solar Cells by Synergistic Effects of Fine-Tuned Crystallinity and Solvent Annealing. Journal of the American Chemical Society, vol.138, no.34, 10935-10944.
Yang, Jing, Xiao, Bo, Tang, Ailing, Li, Jianfeng, Wang, Xiaochen, Zhou, Erjun. Aromatic‐Diimide‐Based n‐Type Conjugated Polymers for All‐Polymer Solar Cell Applications. Advanced materials, vol.31, no.45, 1804699-.
Wang, Yang, Kim, Sang Woo, Lee, Junbok, Matsumoto, Hidetoshi, Kim, Bumjoon J., Michinobu, Tsuyoshi. Dual Imide-Functionalized Unit-Based Regioregular D-A1-D-A2 Polymers for Efficient Unipolar n-Channel Organic Transistors and All-Polymer Solar Cells. ACS applied materials & interfaces, vol.11, no.25, 22583-22594.
Lee, Jin‐Woo, Sun, Cheng, Ma, Boo Soo, Kim, Hyeong Jun, Wang, Cheng, Ryu, Jong Min, Lim, Chulhee, Kim, Taek‐Soo, Kim, Yun‐Hi, Kwon, Soon‐Ki, Kim, Bumjoon J.. Efficient, Thermally Stable, and Mechanically Robust All‐Polymer Solar Cells Consisting of the Same Benzodithiophene Unit‐Based Polymer Acceptor and Donor with High Molecular Compatibility. Advanced energy materials, vol.11, no.5, 2003367-.
Lee, Tack Ho, Park, Song Yi, Park, Won-Woo, Du, Xiaoyan, Son, Jae Hoon, Li, Ning, Kwon, Oh-Hoon, Woo, Han Young, Brabec, Christoph J., Kim, Jin Young. Efficient Exciton Diffusion in Organic Bilayer Heterojunctions with Nonfullerene Small Molecular Acceptors. ACS energy letters, vol.5, 1628-1635.
Pankow, Robert M., Thompson, Barry C.. The development of conjugated polymers as the cornerstone of organic electronics. Polymer, vol.207, 122874-.
Sorrentino, Roberto, Kozma, Erika, Luzzati, Silvia, Po, Riccardo. Interlayers for non-fullerene based polymer solar cells: distinctive features and challenges. Energy & environmental science, vol.14, no.1, 180-223.
Yip, Hin-Lap, Jen, Alex K.-Y.. Recent advances in solution-processed interfacial materials for efficient and stable polymer solar cells. Energy & environmental science, vol.5, no.3, 5994-6011.
Zeng, Hao, Zhu, Xucheng, Liang, Yongye, Guo, Xugang. Interfacial Layer Engineering for Performance Enhancement in Polymer Solar Cells. Polymers, vol.7, no.2, 333-372.
Yin, Zhigang, Wei, Jiajun, Zheng, Qingdong. Interfacial Materials for Organic Solar Cells: Recent Advances and Perspectives. Advanced science, vol.3, no.8, 1500362-.
Yao, Jia, Qiu, Beibei, Zhang, Zhi-Guo, Xue, Lingwei, Wang, Rui, Zhang, Chunfeng, Chen, Shanshan, Zhou, Qiuju, Sun, Chenkai, Yang, Changduk, Xiao, Min, Meng, Lei, Li, Yongfang. Cathode engineering with perylene-diimide interlayer enabling over 17% efficiency single-junction organic solar cells. Nature communications, vol.11, no.1, 2726-.
Wu, Zhihong, Sun, Chen, Dong, Sheng, Jiang, Xiao-Fang, Wu, Siping, Wu, Hongbin, Yip, Hin-Lap, Huang, Fei, Cao, Yong. n-Type Water/Alcohol-Soluble Naphthalene Diimide-Based Conjugated Polymers for High-Performance Polymer Solar Cells. Journal of the American Chemical Society, vol.138, no.6, 2004-2013.
Kang, Qian, Ye, Long, Xu, Bowei, An, Cunbin, Stuard, Samuel J., Zhang, Shaoqing, Yao, Huifeng, Ade, Harald, Hou, Jianhui. A Printable Organic Cathode Interlayer Enables over 13% Efficiency for 1-cm2 Organic Solar Cells. Joule, vol.3, no.1, 227-239.
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.
Zhang, Zhi-Guo, Qi, Boyuan, Jin, Zhiwen, Chi, Dan, Qi, Zhe, Li, Yongfang, Wang, Jizheng. Perylene diimides: a thickness-insensitive cathode interlayer for high performance polymer solar cells. Energy & environmental science, vol.7, no.6, 1966-1973.
Liu, Ming, Fan, Pu, Hu, Qin, Russell, Thomas P., Liu, Yao. Naphthalene‐Diimide‐Based Ionenes as Universal Interlayers for Efficient Organic Solar Cells. Angewandte Chemie. international edition, vol.59, no.41, 18131-18135.
Qin, Fei, Wang, Wen, Sun, Lulu, Jiang, Xueshi, Hu, Lin, Xiong, Sixing, Liu, Tiefeng, Dong, Xinyun, Li, Jing, Jiang, Youyu, Hou, Jianhui, Fukuda, Kenjiro, Someya, Takao, Zhou, Yinhua. Robust metal ion-chelated polymer interfacial layer for ultraflexible non-fullerene organic solar cells. Nature communications, vol.11, no.1, 4508-.
Bini, Kim, Xu, Xiaofeng, Andersson, Mats R., Wang, Ergang. Alcohol-Soluble Conjugated Polymers as Cathode Interlayers for All-Polymer Solar Cells. ACS applied energy materials, vol.1, no.5, 2176-2182.
Cheng, Yen-Ju, Hsieh, Chao-Hsiang, He, Youjun, Hsu, Chain-Shu, Li, Yongfang. Combination of Indene-C60 Bis-Adduct and Cross-Linked Fullerene Interlayer Leading to Highly Efficient Inverted Polymer Solar Cells. Journal of the American Chemical Society, vol.132, no.49, 17381-17383.
Chen, Can, Zhang, Chunlin, Peng, Yichun, Wang, Ningning, Liu, Xingpeng, Du, Sanshan, Tong, Junfeng, Li, Jianfeng, Xia, Yangjun. An alcohol-soluble small molecule as efficient cathode interfacial layer materials for polymer solar cells. Optical Materials, vol.113, 110909-.
Lee, Changyeon, Lee, Junbok, Lee, Seungjin, Lee, Wonho, You, Hoseon, Woo, Han Young, Kim, Bumjoon J.. Importance of device structure and interlayer design in storage stability of naphthalene diimide-based all-polymer solar cells. Journal of materials chemistry. A, Materials for energy and sustainability, vol.8, no.7, 3735-3745.
Zhang, Kai, Xia, Ruoxi, Fan, Baobing, Liu, Xiang, Wang, Zhenfeng, Dong, Sheng, Yip, Hin‐Lap, Ying, Lei, Huang, Fei, Cao, Yong. 11.2% All‐Polymer Tandem Solar Cells with Simultaneously Improved Efficiency and Stability. Advanced materials, vol.30, no.36, 1803166-.
Zhou, Yinhua, Fuentes-Hernandez, Canek, Shim, Jaewon, Meyer, Jens, Giordano, Anthony J., Li, Hong, Winget, Paul, Papadopoulos, Theodoros, Cheun, Hyeunseok, Kim, Jungbae, Fenoll, Mathieu, Dindar, Amir, Haske, Wojciech, Najafabadi, Ehsan, Khan, Talha M., Sojoudi, Hossein, Barlow, Stephen, Graham, Samuel, Brédas, Jean-Luc, Marder, Seth R., Kahn, Antoine, Kippelen, Bernard. A Universal Method to Produce Low-Work Function Electrodes for Organic Electronics. Science, vol.336, no.6079, 327-332.
Seo, Jung Hwa, Gutacker, Andrea, Sun, Yanming, Wu, Hongbin, Huang, Fei, Cao, Yong, Scherf, Ullrich, Heeger, Alan J., Bazan, Guillermo C.. Improved High-Efficiency Organic Solar Cells via Incorporation of a Conjugated Polyelectrolyte Interlayer. Journal of the American Chemical Society, vol.133, no.22, 8416-8419.
Chen, Yu, Jiang, Zhitao, Gao, Mei, Watkins, Scott E., Lu, Ping, Wang, Haiqiao, Chen, Xiwen. Efficiency enhancement for bulk heterojunction photovoltaic cells via incorporation of alcohol soluble conjugated polymer interlayer. Applied physics letters, vol.100, no.20, 203304-.
Jia, Jianchao, Fan, Baobing, Xiao, Manjun, Jia, Tao, Jin, Yaocheng, Li, Yuan, Huang, Fei, Cao, Yong. N-Type Self-Doped Water/Alcohol-Soluble Conjugated Polymers with Tailored Energy Levels for High-Performance Polymer Solar Cells. Macromolecules, vol.51, no.6, 2195-2202.
Sun, Chen, Wu, Zhihong, Hu, Zhanhao, Xiao, Jingyang, Zhao, Wenchao, Li, Ho-Wa, Li, Qing-Ya, Tsang, Sai-Wing, Xu, Yun-Xiang, Zhang, Kai, Yip, Hin-Lap, Hou, Jianhui, Huang, Fei, Cao, Yong. Interface design for high-efficiency non-fullerene polymer solar cells. Energy & environmental science, vol.10, no.8, 1784-1791.
Hu, Lin, Liu, Yun, Mao, Lin, Xiong, Sixing, Sun, Lulu, Zhao, Nan, Qin, Fei, Jiang, Youyu, Zhou, Yinhua. Chemical reaction between an ITIC electron acceptor and an amine-containing interfacial layer in non-fullerene solar cells. Journal of materials chemistry. A, Materials for energy and sustainability, vol.6, no.5, 2273-2278.
Cao, Fong-Yi, Su, Yen-Chen, Hsueh, Yung-Ching, Chou, Chia-Cheng, Cheng, Yen-Ju. Alcohol-Soluble Zwitterionic 4-(Dimethyl(pyridin-2-yl)ammonio)butane-1-sulfonate Small Molecule as a Cathode Modifier for Nonfullerene Acceptor-Based Organic Solar Cells. ACS applied materials & interfaces, vol.13, no.8, 10222-10230.
Cao, Fong-Yi, Lai, Yu-Ying, Chen, Yung-Lung, Cheng, Yen-Ju. Self-assembled tri-, tetra- and penta-ethylene glycols as easy, expedited and universal interfacial cathode-modifiers for inverted polymer solar cells. Journal of materials chemistry. A, Materials for energy and sustainability, vol.4, no.22, 8707-8715.
Lee, Seungjin, Jeong, Dahyun, Kim, Changkyun, Lee, Changyeon, Kang, Hyunbum, Woo, Han Young, Kim, Bumjoon J.. Eco-Friendly Polymer Solar Cells: Advances in Green-Solvent Processing and Material Design. ACS nano, vol.14, no.11, 14493-14527.
Lee, Changyeon, Lee, Hae Rang, Choi, Joonhyeong, Kim, Youngkwon, Nguyen, Thanh Luan, Lee, Wonho, Gautam, Bhoj, Liu, Xiang, Zhang, Kai, Huang, Fei, Oh, Joon Hak, Woo, Han Young, Kim, Bumjoon J.. Efficient and Air‐Stable Aqueous‐Processed Organic Solar Cells and Transistors: Impact of Water Addition on Processability and Thin‐Film Morphologies of Electroactive Materials. Advanced energy materials, vol.8, no.34, 1802674-.
Kim, Youngkwon, Choi, Joonhyeong, Lee, Changyeon, Kim, Youngwoong, Kim, Changkyun, Nguyen, Thanh Luan, Gautam, Bhoj, Gundogdu, Kenan, Woo, Han Young, Kim, Bumjoon J.. Aqueous Soluble Fullerene Acceptors for Efficient Eco-Friendly Polymer Solar Cells Processed from Benign Ethanol/Water Mixtures. Chemistry of materials : a publication of the American Chemical Society, vol.30, no.16, 5663-5672.
Lee, Seungjin, Kim, Youngwoong, Wu, Ziang, Lee, Changyeon, Oh, Seung Jin, Luan, Nguyen Thanh, Lee, Junbok, Jeong, Dahyun, Zhang, Kai, Huang, Fei, Kim, Taek-Soo, Woo, Han Young, Kim, Bumjoon J.. Aqueous-Soluble Naphthalene Diimide-Based Polymer Acceptors for Efficient and Air-Stable All-Polymer Solar Cells. ACS applied materials & interfaces, vol.11, no.48, 45038-45047.
Kim, Changkyun, Kang, Hyunbum, Choi, Nayoun, Lee, Seungjin, Kim, Youngkwon, Kim, Jinwoo, Wu, Ziang, Woo, Han Young, Kim, Bumjoon J.. C70-based aqueous-soluble fullerene for the water composition-tolerant performance of eco-friendly polymer solar cells. Journal of materials chemistry. C, Materials for optical and electronic devices, vol.8, no.43, 15224-15233.
Nguyen, Thanh Luan, Lee, Changyeon, Kim, Hyoeun, Kim, Youngwoong, Lee, Wonho, Oh, Joon Hak, Kim, Bumjoon J., Woo, Han Young. Ethanol-Processable, Highly Crystalline Conjugated Polymers for Eco-Friendly Fabrication of Organic Transistors and Solar Cells. Macromolecules, vol.50, no.11, 4415-4424.
Kang, Boseok, Wu, Ziang, Kim, Min Je, Woo, Han Young, Cho, Jeong Ho. Aqueous-Alcohol-Processable High-Mobility Semiconducting Copolymers with Engineered Oligo(ethylene glycol) Side Chains. Chemistry of materials : a publication of the American Chemical Society, vol.32, no.3, 1111-1119.
Yu, Yingjian, Dong, Changshuai, Alahmadi, Abdullah F., Meng, Bin, Liu, Jun, Jäkle, Frieder, Wang, Lixiang. A p-π* conjugated triarylborane as an alcohol-processable n-type semiconductor for organic optoelectronic devices. Journal of materials chemistry. C, Materials for optical and electronic devices, vol.7, no.24, 7427-7432.
Meng, Bin, Song, Haiyang, Chen, Xingxing, Xie, Zhiyuan, Liu, Jun, Wang, Lixiang. Replacing Alkyl with Oligo(ethylene glycol) as Side Chains of Conjugated Polymers for Close π–π Stacking. Macromolecules, vol.48, no.13, 4357-4363.
Chen, Xingxing, Zhang, Zijian, Ding, Zicheng, Liu, Jun, Wang, Lixiang. Diketopyrrolopyrrole‐based Conjugated Polymers Bearing Branched Oligo(Ethylene Glycol) Side Chains for Photovoltaic Devices. Angewandte Chemie. international edition, vol.55, no.35, 10376-10380.
Yan, He, Chen, Zhihua, Zheng, Yan, Newman, Christopher, Quinn, Jordan R., Dötz, Florian, Kastler, Marcel, Facchetti, Antonio. A high-mobility electron-transporting polymer for printed transistors. Nature, vol.457, no.7230, 679-686.
Lee, Wonho, Lee, Changyeon, Yu, Hojeong, Kim, Dong‐Jun, Wang, Cheng, Woo, Han Young, Oh, Joon Hak, Kim, Bumjoon J.. Side Chain Optimization of Naphthalenediimide–Bithiophene‐Based Polymers to Enhance the Electron Mobility and the Performance in All‐Polymer Solar Cells. Advanced functional materials, vol.26, no.10, 1543-1553.
Müller‐Buschbaum, Peter. The Active Layer Morphology of Organic Solar Cells Probed with Grazing Incidence Scattering Techniques. Advanced materials, vol.26, no.46, 7692-7709.
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.
Aubry, Taylor J., Ferreira, Amy S., Yee, Patrick Y., Aguirre, Jordan C., Hawks, Steven A., Fontana, Matthew T., Schwartz, Benjamin J., Tolbert, Sarah H.. Processing Methods for Obtaining a Face-On Crystalline Domain Orientation in Conjugated Polymer-Based Photovoltaics. The journal of physical chemistry. C, Nanomaterials and Interfaces, vol.122, no.27, 15078-15089.
Rivnay, Jonathan, Steyrleuthner, Robert, Jimison, Leslie H., Casadei, Alberto, Chen, Zhihua, Toney, Michael F., Facchetti, Antonio, Neher, Dieter, Salleo, Alberto. Drastic Control of Texture in a High Performance n-Type Polymeric Semiconductor and Implications for Charge Transport. Macromolecules, vol.44, no.13, 5246-5255.
Lee, Changyeon, Kang, Hyunbum, Lee, Wonho, Kim, Taesu, Kim, Ki‐Hyun, Woo, Han Young, Wang, Cheng, Kim, Bumjoon J.. High‐Performance All‐Polymer Solar Cells Via Side‐Chain Engineering of the Polymer Acceptor: The Importance of the Polymer Packing Structure and the Nanoscale Blend Morphology. Advanced materials, vol.27, no.15, 2466-2471.
Chiguvare, Z., Dyakonov, V.. Trap-limited hole mobility in semiconducting poly(3-hexylthiophene). Physical review. B, Condensed matter and materials physics, vol.70, no.23, 235207-.
Yuan, Jun, Zhang, Yunqiang, Zhou, Liuyang, Zhang, Guichuan, Yip, Hin-Lap, Lau, Tsz-Ki, Lu, Xinhui, Zhu, Can, Peng, Hongjian, Johnson, Paul A., Leclerc, Mario, Cao, Yong, Ulanski, Jacek, Li, Yongfang, Zou, Yingping. Single-Junction Organic Solar Cell with over 15% Efficiency Using Fused-Ring Acceptor with Electron-Deficient Core. Joule, vol.3, no.4, 1140-1151.
Feng, Chuang, Wang, Xiaojing, He, Zhicai, Cao, Yong. Formation Mechanism of PFN Dipole Interlayer in Organic Solar Cells. Solar rrl, vol.5, no.4, 2000753-.
Xue, Qifan, Hu, Zhicheng, Liu, Jiang, Lin, Jiahui, Sun, Chen, Chen, Ziming, Duan, Chunhui, Wang, Jing, Liao, Cheng, Lau, Woon Ming, Huang, Fei, Yip, Hin-Lap, Cao, Yong. Highly efficient fullerene/perovskite planar heterojunction solar cells via cathode modification with an amino-functionalized polymer interlayer. Journal of materials chemistry. A, Materials for energy and sustainability, vol.2, no.46, 19598-19603.
He, Chao, Zhong, Chengmei, Wu, Hongbin, Yang, Renqiang, Yang, Wei, Huang, Fei, Bazan, Guillermo C., Cao, Yong. Origin of the enhanced open-circuit voltage in polymer solar cells via interfacial modification using conjugated polyelectrolytes. Journal of materials chemistry, vol.20, no.13, 2617-2622.
Cowan, Sarah R., Roy, Anshuman, Heeger, Alan J.. Recombination in polymer-fullerene bulk heterojunction solar cells. Physical review. B, Condensed matter and materials physics, vol.82, no.24, 245207-.
Liu, Xingpeng, Liang, Zezhou, Du, Sanshan, Tong, Junfeng, Li, Jianfeng, Zhang, Rongling, Shi, Xiaoyan, Yan, Lihe, Bao, Xichang, Xia, Yangjun. Non-Halogenated Polymer Donor-Based Organic Solar Cells with a Nearly 15% Efficiency Enabled by a Classic Ternary Strategy. ACS applied energy materials, vol.4, no.2, 1774-1783.
Liu, Xingpeng, Du, Sanshan, Fu, Zhijie, Chen, Can, Tong, Junfeng, Li, Jianfeng, Zheng, Nan, Zhang, Rongling, Xia, Yangjun. Ternary solar cells via ternary polymer donors and third component PC71BM to optimize morphology with 13.15% efficiency. Solar energy, vol.222, 18-26.
Blom, P. W. M., Mihailetchi, V. D., Koster, L. J. A., Markov, D. E.. Device Physics of Polymer:Fullerene Bulk Heterojunction Solar Cells. Advanced materials, vol.19, no.12, 1551-1566.
Cheng, Pei, Wang, Rui, Zhu, Jingshuai, Huang, Wenchao, Chang, Sheng‐Yung, Meng, Lei, Sun, Pengyu, Cheng, Hao‐Wen, Qin, Meng, Zhu, Chenhui, Zhan, Xiaowei, Yang, Yang. Ternary System with Controlled Structure: A New Strategy toward Efficient Organic Photovoltaics. Advanced materials, vol.30, no.8, 1705243-.
Guillemoles, Jean-Francois, Kirchartz, Thomas, Cahen, David, Rau, Uwe. Guide for the perplexed to the Shockley-Queisser model for solar cells. Nature photonics, vol.13, no.8, 501-505.
Kim, Ki-Hyun, Kang, Hyunbum, Kim, Hyeong Jun, Kim, Pan Seok, Yoon, Sung Cheol, Kim, Bumjoon J.. Effects of Solubilizing Group Modification in Fullerene Bis-Adducts on Normal and Inverted Type Polymer Solar Cells. Chemistry of materials : a publication of the American Chemical Society, vol.24, no.12, 2373-2381.
Kang, Hyunbum, Kim, Ki-Hyun, Choi, Joonhyeong, Lee, Changyeon, Kim, Bumjoon J.. High-Performance All-Polymer Solar Cells Based on Face-On Stacked Polymer Blends with Low Interfacial Tension. ACS Macro letters, vol.3, no.10, 1009-1014.
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.
Wang, Yiwen, Lan, Weixia, Li, Ning, Lan, Zhaojue, Li, Zhen, Jia, Jingnan, Zhu, Furong. Stability of Nonfullerene Organic Solar Cells: from Built‐in Potential and Interfacial Passivation Perspectives. Advanced energy materials, vol.9, no.19, 1900157-.
Liu, Shengjian, Zhang, Kai, Lu, Junming, Zhang, Jie, Yip, Hin-Lap, Huang, Fei, Cao, Yong. High-Efficiency Polymer Solar Cells via the Incorporation of an Amino-Functionalized Conjugated Metallopolymer as a Cathode Interlayer. Journal of the American Chemical Society, vol.135, no.41, 15326-15329.
Choi, Joonhyeong, Kim, Ki-Hyun, Yu, Hojeong, Lee, Changyeon, Kang, Hyunbum, Song, Inho, Kim, Youngwoong, Oh, Joon Hak, Kim, Bumjoon J.. Importance of Electron Transport Ability in Naphthalene Diimide-Based Polymer Acceptors for High-Performance, Additive-Free, All-Polymer Solar Cells. Chemistry of materials : a publication of the American Chemical Society, vol.27, no.15, 5230-5237.
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