Institute of Molecular Aggregation Science
Professor
associate dean
lilq@tju.edu.cn
Weijin Road Campus of Tianjin University
300072
Li Liqiang is a professor and doctoral supervisor of Tianjin University. He was awarded the National Outstanding Youth Fund in 2022. He obtained his bachelor's and master's degrees from Nankai University in 2002 and 2005, and his doctorate from the Institute of Chemistry Chinese Academy of Sciences in 2008. His supervisor is researcher Hu Wenping. In the same year, he joined Professor Chi Lifeng's research group at the University of Münster in Germany for postdoctoral work. In 2014, he joined the Suzhou Institute of Nanotechnology and Nanobionics, Chinese Academy of Sciences, as a researcher, and was transferred to Tianjin University in 2019. He has been engaged in the research of organic field effect transistor materials and devices, focusing on the stability, controllable assembly, doping and electrical transport mechanism of organic semiconductors. Published more than 100 articles in journals such as Nat. Mater., Adv. Mater., Sci. Adv., Nat. Commun., J. Am. Chem. Soc., Angew. Chem. Int. Ed., Adv. Energy Mater. Presided over the sub-projects of the key R&D plan of the Ministry of Science and Technology, the general projects of the Fund Committee (2 projects), the frontier science key projects of the Chinese Academy of Sciences, the Tianjin Outstanding Youth Fund, and the key projects of Tianjin. Key projects, key R&D plans of the Ministry of Science and Technology.logy.
- Doctoral degree| Institute of Chemistry Chinese Academy of Sciences| 2008
- Master’s Degree| Nankai University| 2005
- Bachelor’s Degree| Nankai University| 2002
- Stability of Organic Semiconductors and Transistor Devices
- Design and Synthesis of Organic Semiconductor Molecular Materials and Construction of Optoelectronic Functional Devices
- Controllable Doping and Applications of Organic Semiconductor Molecular Materials
- New light, force and heat sensing devices based on molecular materials
- Growth and Device Construction of Two-dimensional Molecular Materials
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2018.6-Now
 Tianjin University  -
2014.5-2019.5
 Suzhou Institute of Nanotechnology and Nanobionics, Chinese Academy of Sciences  -
2008.10-2014.5
 University of Munster 
- Papers
- [1] Zhongwu Wang#, Xiaosong Chen#, Li Yu#, Shujing Guo, Yongxu Hu, Yinan Huang, Shuguang Wang, Jiannan Qi, Cheng Han, Xiaonan Ma, Xiaotao Zhang, Huanli Dong, Wei Chen, Liqiang Li, and Wenping Hu, Polymer Electrolyte Dielectrics Enable Efficient Exciton-Polaron Quenching in Organic Semiconductors for Photostable Organic Transistors, ACS Applied Materials Interfaces,2022, 14, 13584-13592.
- [2] Zheng Chen#, Shuming Duan#, Xiaotao Zhang#, Bowen Geng, Yanling Xiao, Jiansheng Jie, Huanli Dong, Liqiang Li,* Wenping Hu, Organic Semiconductor Crystal Engineering for High-Resolution Layer-Controlled 2D Crystal Arrays, Advanced Materials, 2022, 34, 2104166.
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- [3] Haoquan Zhang#, Yongxu Hu#, Xiaosong Chen#, Li Yu, Yinan Huang, Zhongwu Wang, Shuguang Wang, Yunpeng Lou, Xiaonan Ma, Yajing Sun, Jie Li, Deyang Ji, Liqiang Li,* and Wenping Hu, A centrosymmetric organic semiconductor with donor–acceptor interaction for highly photostable organic transistors, Advance Functional Materials, 2022, 32, 2111705.
- [4] Yongxu Hu, Li Yu, Yinan Huang, Zhongwu Wang, Shuguang Wang, Xiaosong Chen, Deyang Ji, Huanli Dong, Jie Li,* Yajing Sun,* Liqiang Li,* Wenping Hu, Thermally-enhanced photo-electric response of an organic semiconductor with low exciton binding energy for simultaneous and distinguishable detection of light and temperature, Sci. China Chem. 2022,65, 145–152.
- [5] Tianyu Wang, Kai Zhao, Pan Wang, Wanfu Shen, Haikuo Gao, Zhengsheng Qin, Yongshuai Wang, Chunlei Li, Huixiong Deng, Chunguang Hu, Lang Jiang, Huanli Dong,* Zhongming Wei,* Liqiang Li,* Wenping Hu* Intrinsic Linear Dichroism of Organic Single Crystals toward High-Performance Polarization-Sensitive Photodetectors, Advanced Materials, 2022, 34, 2105665.
- [6] Hongwei Li#, Ziting Tan#, Liqian Yuan, Jie Li, Xiaosong Chen, Deyang Ji, Kai Zhang, Wenping Hu and Liqiang Li,* Eggshell-inspired membrane-shell strategy for simultaneously improving the sensitivity and detection range of strain sensors, Science China Materials, 2021, 64, 717-726.
- [7] Zhongwu Wang#, Hongzhen Lin#, Xi Zhang#, Jie Li, Xiaosong Chen, Shuguang Wang, Wenbin Gong, Hui Yan, Qiang Zhao, Weibang Lv, Xue Gong, Qingbo Xiao, Fujin Li, Deyang Ji, Xiaotao Zhang, Huanli Dong, Liqiang Li,* Wenping Hu, Revealing Molecular Conformation–Induced Stress at Embedded Interfaces of Organic Optoelectronic Devices by Sum Frequency Generation Spectroscopy, Science Advances, 2021, 7, eabf8555.
- [8] Shuguang Wang, Zhongwu Wang, Yinan Huang, Yongxu Hu, Liqian Yuan, Shujing Guo, Lei Zheng, Mingxi Chen, Chenhuai Yang, Yingshuang Zheng, Jiannan Qi, Li Yu, Hongwei Li, Wenchong Wang, Deyang Ji, Xiaosong Chen,* Jie Li,* Liqiang Li,* and Wenping Hu, Directly Patterning Conductive Polymer Electrodes on Organic Semiconductor via In Situ Polymerization in Microchannels for High-Performance Organic Transistors, ACS Applied Materials Interfaces, 2021, 13, 17852−17860.
- [9] Yinan Huang#, Xue Gong#, Yancheng Meng, Zhongwu Wang, Xiaosong Chen, Jie Li, Deyang Ji, Zhongming Wei, Liqiang Li,* Wenping Hu, Effectively Modulating Thermal Activated Charge Transport in Organic Semiconductors by Precise Potential Barrier Engineering, Nature Communications, 2021, 12, 21.
- [10] Shujing Guo, ZhongwuWang, Xiaosong Chen, Lin Li, Jie Li,* Deyang Ji,* Liqiang Li,* Wenping Hu, Low-voltage polymer-dielectric-based organic field-effect transistors and applications, Nano Select, 2022, 3, 20-38.
- [11] Yingshuang Zheng, Li Yu, Zhongwu Wang, Xiaosong Chen, Jie Li, * Ye Zou, * Deyang Ji, * Liqiang Li, * and Wenping Hu,Functionalization of Low-k Polyimide Gate Dielectrics with Self-Assembly Monolayer Toward High-Performance Organic Field-Effect Transistors and Circuits, Advanced Materials Interfaces, 2021, 11, 2100217.
- [12] Jie Li, Yongxu Hu, Li Yu, Lin Li, Deyang Ji,* Liqiang Li,* Wenping Hu, and Harald Fuchs*,Recent Advances of Nanospheres Lithography in Organic Electronics, Small, 2021, 17, 2100724.
- [13] Deyang Ji*, Liqiang Li*, Harald Fuchs, Wenping Hu, Engineering the Interfacial Materials of Organic Field-effect Transistors for Efficient Charge Transport, Accounts of Materials Research, 2021, 2, 159–169.
- [14] Ziting Tan#, Hongwei Li#, Yinan Huang, Xue Gong, Jiannan Qi, Jie Li, Xiaosong Chen*, Deyang Ji, Weibang Lv, Liqiang Li*, Wenping Hu, Breathing-effect Assisted Transferring Large-area PEDOT:PSS to PDMS Substrate with Robust Adhesion for Stable Flexible Pressure Sensor, Composites Part A: Applied Science and Manufacturing, 2021, 143, 106299.
- [15] Ziting Tan, Hongwei Li, Zhikai Niu, Xiaosong Chen, Hui Yang, Weibang Lu, Deyang Ji*, Jie Li*, Liqiang Li*, Wenping Hu, Armadillo-inspired Micro-foldable Metal Electrode with Negligible Resistance Change under Large Stretchability, Journal of Materials Chemistry C, 2021, 9, 4046–4052.
- [16] Zhongwu Wang#, Shuguang Wang#, Lizhen Huang#, Liqiang Li*, Lifeng Chi*, Micro-structured Ultrathin Organic Semiconductor Film via Dip-Coating: Precise Assembly and Diverse Applications, Accounts of Materials Research, 2020, 1, 201–212.
- [17] Deyang Ji, Jie Li, Xiaosong Chen, Lin Li, Liqiang Li*, Wenping Hu, Polymer Mask-Weakening Grain-boundary Effect: towards High-performance Organic Thin-Film Transistors with Mobility closing to 20 cm2 V−1 s−1, Materials Chemistry Frontiers, 2020, 4, 2990-2994.
- [18] Jie Li#, Deyang Ji#, Yongxu Hu#, Mingxi Chen, Jinyu Liu, Zhengsheng Qin, Yajing Sun, Yangyang Dang, Yonggang Zhen, Huanli Dong, Liqiang Li*, Wenping Hu, Substitution Site Effect of Naphthyl Substituted Anthracene Derivatives and Their Applications in Organic Optoelectronics, Journal of Materials Chemistry C, 2020, 8, 15597–15602.
- [19] Shuguang Wang, Zhongwu Wang, Jie Li*, Liqiang Li*, Wenping Hu, Surface-rafting Polymer: from Chemistry to Organic Electronics, Materials Chemistry Frontier 2020, 4, 692–714.
- [20] Liqian Yuan#, Zhongwu Wang#, Hongwei Li, Yinan Huang, Shuguang Wang, Xue Gong, Ziting Tan, Yongxu Hu, Xiaosong Chen, Jie Li*, Hongzhen Lin*, Liqiang Li*, Wenping Hu, Synergistic Resistance Modulation toward Ultrahighly Sensitive Piezoresistive Pressure Sensors, Advanced Materials Technologies, 2020, 5, 1901084. (front cover)
- [21] Xue Gong#, Long Zhang#, Yinan Huang#, Shuguang Wang, Gebo Pan*, Liqiang Li*, Directly writing flexible temperature sensor with graphene nanoribbons for disposable healthcare devices, RSC Advances, 2020, 10, 22222-22229.
- [22] Zhongwu Wang, Shujing Guo, Hongwei Li, Bin Wang, Yongtao Sun, Zeyang Xu, Xiaosong Chen, Kunjie Wu, Xiaotao Zhang, Feifei Xing, Liqiang Li*, Wenping Hu, The Semiconductor/Conductor Interface Piezoresistive Effect in an Organic Transistor for Highly Sensitive Pressure Sensors, Advanced Materials, 2019, 31, 1805630.
- [23] Yancheng Meng, Xue Gong, Yinan Huang, Liqiang Li*, Mechanically Tunable Opacity Effect in Transparent Bilayer Film: Accurate Interpretation and Rational Applications, Applied Materials Today, 2019, 16, 474-481.
- [24] Yinan Huang, Shuguang Wang, Zhongwu Wang, Xu Gong, Yancheng Meng, Hongwei Li, Ziting Tan, Liqian Yuan, Jie Li, Yigang Chen, Liqiang Li*, Wenping Hu, Extremely Sensitive, Allochroic Airflow Sensors by Synergistic Effect of Reversible Water Molecules Adsorption and Tunable Interlayer Distance in Graphene Oxide Film, Advanced Materials Interface, 2019, 6, 1900365.
- [25] Yancheng Meng, Suna Zhang, Kunjie Wu, Jie Li, and Liqiang Li*, Mechanically Tunable Bilayer Composite Grating for Unique Light Manipulation and Information Storage, Advanced Optical Materials, 2019, 7, 1801017.
- [26] Qiancheng Mu, Shuguang Wang, Jianping Li, Luhao Zhou, Liqiang Li*, Lifeng Chi*, Wang, Wenchong*, Multi-species micropatterning of organic materials by liquid droplet array transfer printing, Applied Physics Letters, 2019, 114, 183702.
- [27] Zezhou Zhu, Chaowei Li, Songfeng E, Liyan Xie, Renjie Geng, Cheng Te Lin, Liqiang Li*, Yagang Yao*, Enhanced thermal conductivity of polyurethane composites via engineering small/large sizes interconnected boron nitride nanosheets, Composites Science and Technology, 2019, 170, 93-100.
- [28] Junjie Kan, Shuguang Wang, Zhongwu Wang, Shujing Guo, Wenchong Wang*, Liqiang Li*, Fabrication of flexible thin organic transistors by trace water assisted transfer method, Chinese Chemical Letters, 2018, 29, 1681-1684.
- [29] Yingshuang Zheng#, Jie Li#, Deyang Ji,* Huanli Dong, Liqiang Li,* Harald Fuchs,* Wenping Hu,* Copper Tetracyanoquinodimethane: from Micro/Nanostructures to Applications, Small, 2021, 17, 2004143.
- [30] Zhongwu Wang, Shujing Guo, Qianying Liang, Huanli Dong, Liqiang Li*, Zongbo Zhang*, Feifei Xing*, Wenping Hu*, Ultrathin Silica Film Derived with Ultraviolet Irradiation of Perhydropolysilazane for High Performance and Low Voltage Organic Transistor and Inverter, Science China Materials, 2018, 61, 1237–1242.
- [31] Yancheng Meng, Hongwei Li, Kunjie Wu, Suna Zhang, Liqiang Li*, High-Performance Pressure Sensor for Monitoring Mechanical Vibration and Air Pressure, Polymers, 2018, 10, 587.
- [32] Hongwei Li, Kunjie Wu, Zeyang Xu, Zhongwu Wang, Yancheng Meng, Liqiang Li*, Ultrahigh-Sensitivity Piezoresistive Pressure Sensors for Detection of Tiny Pressure, ACS Applied Materials Interfaces, 2018, 10, 20826−20834.
- [33] Yi Yang, Zhongwu Wang, Zeyang Xu, Kunjie Wu, Xiaoqin Yu, Xiaosong Chen, Yancheng Meng, Hongwei Li, Song Qiu, Hehua Jin, Liqiang Li*, Qingwen Li*, Low Hysteresis Carbon Nanotube Transistors Constructed via a General Dry-Laminating Encapsulation Method on Diverse Surfaces, ACS Applied Materials Interfaces, 2017, 9, 14292−14300.
- [34] Zeyang Xu, Kunjie Wu, Suna Zhang, Yancheng Meng, Hongwei Li, Liqiang Li*, Highly Sensitive Airflow Sensors with an Ultrathin Reduced Graphene Oxide Film Inspired by Gas Exfoliation of Graphite Oxide, Materials Horizons, 2017, 4, 383–388.
- [35] Shuguang Wang, Kai Zhang, Minghong Wu, Jianmei Chen, Lin Jiang, Liqiang Li*, Lifeng Chi*, and Wenchong Wang*, Stamp Recyclable Contact Printing of Liquid Droplet Matrix on Various Surfaces, Journal of Materials Chemistry C, 2017, 5, 10971–10975.
- [36] Shujing Guo, Zhongwu Wang, Zeyang Xu, Shuguang Wang, Kunjie Wu, Shufeng Chen*, Zongbo Zhang*, Caihong Xu, Wenfeng Qiu*, Liqiang Li*, Solution-processable Precursor Route for Fabricating Ultrathin Silica Film for High Performance and Low Voltage Organic Transistors, Chinese Chemical Letters, 2017, 28, 2143–2146.
- [37] Xi Zhang, Suna Zhang, Liqiang Li*, Xiaosong Chen, Zeyang Xu, Kunjie Wu, Hongwei Li, Yancheng Meng, Wenchong Wang, Wenping Hu*, Lifeng Chi*, Kilohertz Organic Complementary Inverters Driven by Surface-grafting Conducting Polypyrrole Electrodes, Solid-State Electronics, 2016, 123, 51–57.
- [38] Xi Zhang, Xiaosong Chen, Jie Liu, Yonggang Zhen, Huanli Dong, Liqiang Li*, Wenping Hu*, Tuning the aggregation structure and electrical property of 2.6-diphenyl-anthracene by the density of octadecyltrichlorosilane, Science China-Chemistry, 2016, 59, 1645–1650.
- [39] Zeyang Xu, Xiaosong Chen, Suna Zhang, Kunjie Wu, Hongwei Li, Yancheng Meng, Liqiang Li*, Minimizing Electrode Edge in Organic Transistors with Ultrathin Reduced Graphene Oxide for Improving Charge Injection Efficiency, Physical Chemistry Chemical Physics, 2016, 18, 13209−13215.
- [40] Kunjie Wu, Hongwei Li, Liqiang Li*, Suna Zhang, Xiaosong Chen, Zeyang Xu, Xi Zhang, Wenping Hu*, Lifeng Chi*, Xike Gao*, and Yancheng Meng, Controlled Growth of Ultrathin Film of Organic Semiconductors by Balancing the Competitive Processes in Dip-coating for Organic Transistors, Langmuir, 2016, 32, 6246−6254.
- [41] Xiaosong Chen, Suna Zhang, Kunjie Wu, Zeyang Xu, Hongwei Li, Yancheng Meng, Xueming Ma, Liwei Liu, Liqiang Li*, Improving the Charge Injection in Organic Transistors by Covalently Linked Graphene Oxide/Metal Electrodes, Advanced Electronic Materials, 2016, 2, 1500409.
- [42] Xiaosong Chen, Zeyang Xu, Kunjie Wu, Suna Zhang, Hongwei Li, Yancheng Meng, Zhongwu Wang, Liqiang Li*, and Xueming Ma*, Facile Peeling Method as a Post-Remedy Strategy for Producing an Ultrasmooth Self-Assembled Monolayer for High-Performance Organic Transistors, Langmuir, 2016, 32, 9492−9500.
- [43] Kunjie Wu, Suna Zhang, Zeyang Xu, Xiaosong Chen, Liqiang Li*, Solution-Processed Organic Complementary Inverters Based on TIPS-Pentacene and PDI8-CN2, IEEE Transactions on Electron Devices, 2015, 62, 4220-4224.
- [44] Liqiang Li, Peng Gao, Wenchong Wang, Klaus Müllen*, Harald Fuchs, Lifeng Chi*, Growth of Ultrathin Organic Semiconductor Microstripes with Thickness Control in the Monolayer Precision, Angewandte Chemie-International Edition, 2013, 52, 12530 –12535.
- [45] Liqiang Li, Peng Gao, Martin Baumgarten, Klaus Müllen*, Nan Lu, Harald Fuchs, Lifeng Chi*, High Performance Field-Effect Ammonia Sensors Based on a Structured Ultrathin Organic Semiconductor Film, Advanced Materials, 2013, 25, 3419–3425.
- [46] Liqiang Li, Karin Meise-Gresch, Lin Jiang, Chuan Du, Wenchong Wang, Harald Fuchs, Lifeng Chi*, The Electrode’s Effect on the Stability of Organic Transistors and Circuits, Advanced Materials, 2012, 24(22), 3053–3058.
- [47] Liqiang Li, Michael H. Köpf, Svetlana V. Gurevich, Rudolf Friedrich*, and Lifeng Chi*, Structure Formation by Dynamic Self-Assembly, Small, 2012, 8, 488–503.
- [48] Liqiang Li, Lin Jiang, Wenchong Wang, Chuan Du, Harald Fuchs, Wenping Hu, and Lifeng Chi*, High-Performance and Stable Organic Transistors and Circuits with Patterned Polypyrrole Electrodes, Advanced Materials, 2012, 24, 2159–2164.
- [49] Liqiang Li, Wenping Hu*, Harald Fuchs, and Lifeng Chi*, Controlling Molecular Packing for Charge Transport in Organic Thin Films, Advanced Energy Materials, 2011, 1, 188–193.
- [50] Liqiang Li, Wenping Hu*, Lifeng Chi*, and Harald Fuchs, Polymer Brush and Inorganic Oxide Hybrid Nanodielectrics for High Performance Organic Transistors, Journal of Physical Chemistry B, 2010, 114, 5315–5319.
- [51] Liqiang Li, Michael Hirtz, Wenchong Wang, Chuan Du, Harald Fuchs, and Lifeng Chi*, Patterning of Polymer Electrodes by Nanoscratching, Advanced Materials, 2010, 22, 1374–1378.
- [52] Liqiang Li, Peng Gao, Klaus C. Schuermann, Stefan Ostendorp, Wenchong Wang, Chuan Du, Yong Lei, Harald Fuchs, Luisa De Cola, Klaus Muellen*, and Lifeng Chi*, Controllable Growth and Field-Effect Property of Monolayer to Multilayer Microstripes of an Organic Semiconductor, Journal of the American Chemical Society, 2010, 132, 8807–8809.
- [53] Liqiang Li, Yajie Zhang, Hongxiang Li, Qingxin Tang, Lang Jiang, Lifeng Chi*, Harald Fuchs, and Wenping Hu*, Battery Drivable Organic Single-Crystalline Transistors Based on Surface Grafting Ultrathin Polymer Dielectric, Advanced Functional Materials 2009, 19, 2987–2991.
- [54] Liqiang Li, Qingxin Tang, Hongxiang Li, Wenping Hu*, Xiaodi Yang, Zhigang Shuai, Yunqi Liu, and Daoben Zhu, Organic Thin-film Transistors of Phthalocyanines, Pure and Applied Chemistry, 2008, 80, 2231–2240.
- [55] Liqiang Li, Qingxin Tang, Hongxiang Li*, Wenping Hu*, Molecular Orientation and Interface Compatibility for High Performance Organic Thin Film Transistor Based on Vanadyl Phthalocyanine, Journal of Physical Chemistry B, 2008, 112, 10405–10410.
- [56] Liqiang Li, Hongxiang Li, Yabin Song, We Xu, Wenping Hu*, Daoben Zhu, Air-stable Ambipolar Field-effect Transistors based on Copper Phthalocyaintine and Tetracyanoquinodimethane, Research on Chemical Intermediates, 2008, 34, 147–153.
- [57] Liqiang Li, Qingxin Tang, Hongxiang Li, Xiaodi Yang, Wenping Hu*, Yabin Song, Zhigang Shuai*, Wei Xu, Yunqi Liu*, and Daoben Zhu*, An Ultra Closely p-Stacked Organic Semiconductor for High Performance Field-Effect Transistors, Advanced Materials, 2007, 19, 2613–2617.