曲良体 教授 博士 北京市 研究领域: 新能源 研究方向: 先进功能材料、微纳制造、新能源器件 • 先进材料制备(石墨烯、功能高分子、碳纳米材料、智能响应材料) • 微纳制造(分子/纳米级材料设计、纳米化学、电化学、微纳组装、激光微纳制造) • 新能源器件(海水淡化、空气发电、电池/电容器、柔性电子与微纳能源器件) 所在单位: 清华大学

基本信息

所在单位:
清华大学
机构细分:
化学系
单位类型:
高等院校
职务:
教授
职称:
教授
最高学历:
博士
教育经历:
2001.09 – 2004.07  清华大学   化学     博士
1998.09 – 2001.07  大连理工大学 化学     硕士
1994.09 – 1998.07  济南大学   应用化学   学士
工作经历:
2020.1 –        清华大学      化学系        教授
2009.5 – 2019.12  北京理工大学   化学与化工学院   教授
2004.9 – 2009.5   美国代顿大学   化学与材料工程系 博士后、研究助理教授
专家介绍:
曲教授发展了功能材料化学与结构调控方法学,建立了能量转换与存储过程的新理论与关键核心技术。首次提出“水汽发电”新概念,发明湿气自发电技术,建立水分子诱导离子扩散产电理论和模型,Nature为此做专门报道,引领该领域的发展,展示出巨大应用潜力。
面向能源微器件及集成制造重大需求,提出材料瞬态化学与物理演化新机制,攻克柔性非平面电极结构的精细制备关键技术;提出电场增强离子迁移的新策略,提高频率特性及数倍电容量,实现了高密度、高一致性的芯片式集成,为下一代柔性微电子器件的开发奠定关键基础。
已发表SCI论文300多篇,包括Nature 1篇,Science 1篇,Nat Nanotechnol 2篇,Nat Water 1篇,Sci Adv 2篇,Nat Commun 13篇,Adv Mater 30篇,Angew Chem Int Ed 13篇,J Am Chem Soc 3篇,Energy Environ Sci 17篇等,论文他引38000多次;受邀在Nat Rev Mater, Chem Rev等撰写综述论文30余篇,编写《石墨烯化学与组装技术》专著1部;授权发明专利25项,3项实现产业化。获国家自然科学二等奖1项,教育部自然科学一等奖1项。
入选国家百千万人才 “有突出贡献中青年专家”、万人计划“领军人才”、教育部长江学者、国家杰青,及国家重点研发计划项目首席科学家等。
专家荣誉:
中国化学会会士(2023年)
享受国务院特殊津贴专家(2023年)
国家“百千万人才工程”(2017年)
“万人计划”科技创新领军人才(2016年)
教育部长江学者特聘教授(2014年)
科技部中青年科技创新领军人才(2014年)
国家杰出青年科学基金获得者(2013年)
教育部霍英东基金获得者(2009年)
新世纪优秀人才(2009年)
国家自然科学二等奖1项(2016年)第二获奖人
教育部自然科学一等奖1项(2015年)第五获奖人

科研能力

研究领域:
新能源
研究方向:
先进功能材料、微纳制造、新能源器件
• 先进材料制备(石墨烯、功能高分子、碳纳米材料、智能响应材料)
• 微纳制造(分子/纳米级材料设计、纳米化学、电化学、微纳组装、激光微纳制造)
• 新能源器件(海水淡化、空气发电、电池/电容器、柔性电子与微纳能源器件)
英文标签:
Graphene;Multidisciplinary;Science;Humanities And Social Sciences;Femtosecond Laser;Supercapacitors;Graphene Oxide;Energy Storage;Nano-composites;Oxygen Reduction Reaction
论文著作:
部分论文
1. Kaixuan Zhu, Houze Yao, JiaJia Song, Qihua Liao, Shuang He, Tianlei Guang, Haiyan Wang, Xuanzhang Hao, Bing Lu, Tengyu Lin, Huhu Cheng, Xin Liu, Liangti Qu*, Temperature- adaptive dual- modal photonic textiles for thermal management,Science Advances, 2024, 10, eadr2062.
2. Jiaxing Xu, Pengfei Wang, Zhaoyuan Bai, Huhu Cheng, Ruzhu Wang*, Liangti Qu* & Tingxian Li*, Sustainable moisture energy,Nature Reviews Materials, 2024, 9, 722–737.
3. Bing Lu, Li Yu, Yajie Hu, Ying Wang, Fei Zhao, Yang Zhao*, Feng Liu*, Huhu Cheng & Liangti Qu*, Evaporate-casting of curvature gradient graphene superstructures for ultra-high strength structural materials,Nature Communications, 2024, 15, 5917.
4. Lifeng Wang, Haiyan Wang, Chunxiao Wu, Jiaxin Bai, Tiancheng He, Yan Li*, Huhu Cheng*, and Liangti Qu*, Moisture-enabled self-charging and voltage stabilizing supercapacitor,Nature Communications, 2024, 15, 4929.
5. Chang Gao, Jiajia Liu, Yuxin Han, Rui Chen, Jiancheng Huang, Yuyang Gu, Yang Zhao,* and Liangti Qu*, An Energy-Adjustable, Deformable, and Packable Wireless Charging Fiber Supercapacitor,Adv. Mater.2024, 36, 2413292.
6. Zhao, et al., A universal approach to dual- metal- atom catalytic sites confined in carbon dots for various target reactions,PNAS, 2023, 120 (44), e2308828120.
7. Yajie Hu, Mingmao Wu, Fengyao Chi, Guobin Lai, Puying Li, Wenya He, Bing Lu, Chuanxin Weng, Jinguo Lin, Fengen Chen, Huhu Cheng, Feng Liu, Lan Jiang & Liangti Qu*, Ultralow-resistance electrochemical capacitor for integrable line filtering,Nature, 2023, 624, 74–79.
8. Xuanzhang Hao, Houze Yao, Panpan Zhang, Qihua Liao, Kaixuan Zhu, Jian Chang, Huhu Cheng*, Jiayin Yuan* & Liangti Qu*, Multifunctional solar water harvester with high transport selectivity and fouling rejection capacity,Nature Water, 2023, 1, 982–991.
9. Puying Li, Yajie Hu, Wenya He, Bing Lu, Haiyan Wang, Huhu Cheng* & Liangti Qu*, Multistage coupling water-enabled electric generator with customizable energy output,Nat. Commun., 2023, 14: 5702.
10. Jiaxin Bai, Qihua Liao, Houze Yao, Tianlei Guang, Tiancheng He, Huhu Cheng, and Liangti Qu*, Self-induced interface enhanced moisture-harvesting and light-trapping toward high performance electric power generation,Energy Environ. Sci., 2023, 16, 3088–3097
11. Tong Xu, Xiaoteng Ding, Huhu Cheng, Gaoyi Han, and Liangti Qu*, Moisture-Enabled Electricity from Hygroscopic Materials: A New Type of Clean Energy,Adv. Mater.2023, 2209661
12. Kaixuan Zhu, Qihua Liao, Xuanzhang Hao, Houze Yao, Jiaxin Bai, Tianlei Guang, Tengyu Lin, Huhu Cheng* and Liangti Qu*, Low-Grade Waste Heat Enables Over 80 L m−2 h−1 Interfacial Steam Generation Based on 3D Superhydrophilic Foam,Adv. Mater.2023, 35, 2211932.
13. Fully printed planar moisture-enabled electric generator arrays for scalable function integration, Tiancheng He, Haiyan Wang, Bing Lu, Tianlei Guang, Ce Yang, Yaxin Huang, Huhu Cheng, Liangti Qu*,Joule2023, 7, 935–951.
14. Panpan Zhang,* Haiyang Wang, Jing Wang,Zhiyong Ji,* and Liangti Qu*, Boosting the Viable Water Harvesting in Solar Vapour Generation: From Interfacial Engineering to Devices Design,Adv. Mater., 2023, https://doi.org/10.1002/adma.202303976
15. Mingmao Wu, Hongya Geng, Yajie Hu, Hongyun Ma, Ce Yang, Hongwu Chen, Yeye Wen, Huhu Cheng, Chun Li, Feng Liu, Lan Jiang & Liangti Qu*, “Superelastic graphene aerogel-based metamaterials,Nat. Commun., 2022, 13:4561.
16.Ce Yang,Haiyan Wang,Jiaxin Bai,Tiancheng He,Huhu Cheng*,Tianlei Guang,Houze Yao&Liangti Qu*, Transfer learning enhanced water-enabled electricity generation in highly oriented graphene oxide nanochannels,Nat. Commun., 2022, 13: 6819.
17. Haiyan Wang, Tiancheng He, Xuanzhang Hao, Yaxin Huang, Houze Yao, Feng Liu*, Huhu Cheng* & Liangti Qu*, “Moisture adsorption-desorption full cycle power generation”,Nat. Commun., 2022, 13:2524.
18. Chunlong Dai, Linyu Hu, Xuting Jin, Ying Wang, Rui Wang, Yukun Xiao, Xiangyang Li, Xinqun Zhang, Li Song, Yuyang Han, Huhu Cheng, Yang Zhao, Zhipan Zhang*, Feng Liu*, Lan Jiang, Liangti Qu*, “Fast constructing polarity-switchable zinc-bromine microbatteries with high areal energy density”,Sci. Adv., 2022, 8, eabo6688.
19. Ying Wang, Yang Zhao,* Yuyang Han, Xiangyang Li, Chunlong Dai, Xinqun Zhang, Xuting Jin, Changxiang Shao, Bing Lu, Chengzhi Wang, Huhu Cheng, Feng Liu,* and Liangti Qu*, “Fixture-free omnidirectional prestretching fabrication and integration of crumpled in-plane microsupercapacitors”,Sci. Adv., 2022, 8, eabn8338.
20. Chunlong Dai, Linyu Hu, Hao Chen, Xuting Jin, Yuyang Han, Ying Wang, Xiangyang Li, Xinqun Zhang, Li Song, Maowen Xu, Huhu Cheng, Yang Zhao, Zhipan Zhang*, Feng Liu* & Liangti Qu*, “Enabling fast-charging selenium-based aqueous batteries via conversion reaction with copper ions”,Nat. Commun.2022, 13:1863
21. Ce Yang, Haiyan Wang, Jiawei Yang, Houze Yao, Tiancheng He, Jiaxin Bai, Tianlei Guang, Huhu Cheng*, Jianfeng Yan, and Liangti Qu*, “Machine Learning Enhanced Simultaneous and Multimodal Sensor Based on Moist-Electric Powered Graphene Oxide”,Adv Mater.2022, 34, 2205249.
22. Xinghang Liu, Feixiang Chen, Yuankai Li, Hanjin Jiang, Debesh Devadutta Mishra, Fang Yu, Zihe Chen, Chaoquan Hu,* Yun Chen,* Liangti Qu,* and Weitao Zheng*, “3D Hydrogel Evaporator with Vertical Radiant Vessels Breaking the Trade-Off between Thermal Localization and Salt Resistance for Solar Desalination of High-Salinity”,Adv. Mater.2022, 34, 2203137.
23. Jiaxin Bai, Yaxin Huang, Haiyan Wang, Tianlei Guang, Qihua Liao, Huhu Cheng, Shanhao Deng, Qikai Li, Zhigang Shuai*, Liangti Qu*, “Sunlight-coordinated high-performance Moisture Power in Natural Condition”,Adv. Mater.2022, 34, 2103897.
24. Jiaxin Bai, Yajie Hu, Tianlei Guang, Kaixuan Zhu, Haiyan Wang, Huhu Cheng, Feng Liu and Liangti Qu*, “Vapor and heat dual-drive sustainable power for portable electronics in ambient environments”,Energy Environ. Sci., 2022, 15, 3086–3096.
25. Hongyun Ma, Hongwu Chen, Yajie Hu, Bingjun Yang, Jianze Feng, Yongtai Xu, Yinglun Sun, Huhu Cheng, Chun Li, Xingbin Yan* and Liangti Qu*, “Aqueous rocking-chair aluminum-ion capacitors enabled by a self-adaptive electrochemical pore-structure remolding approach”,Energy Environ. Sci., 2022, 15, 1131–1143.
26. Xuting Jin, Li Song, Chunlong Dai, Yukun Xiao, Yuyang Han, Xiangyang Li, Ying Wang, Jiatao Zhang, Yang Zhao*, Zhipan Zhang*, Nan Chen, Lan Jiang, Liangti Qu*, “A Flexible Aqueous Zinc-Iodine Micro-battery with Unprecedented Energy Density”,Adv. Mater.2022, 2109450.
27. Haiyan Wang, Yilin Sun, Tiancheng He, Yaxin Huang, Huhu Cheng*, Chun Li, Dan Xie, Pengfei Yang, Yanfeng Zhang, Liangti Qu*, “Bilayer of polyelectrolyte films for spontaneous power generation in air up to an integrated 1,000 V output”,Nat. Nanotechnol., 2021, 16, 811–819.
28. Chang Gao, Jiancheng Huang, Yukun Xiao, Guoqiang Zhang, Chunlong Dai, Zengling Li, Yang Zhao*, Lan Jiang & Liangti Qu*, “A seamlessly integrated device of microsupercapacitorand wireless charging with ultrahigh energy density and capacitance”,Nat. Commun., 2021, 12:2647
29. Xuting Jin, Li Song, Hongsheng Yang, Chunlong Dai, Yukun Xiao, Xinqun Zhang, Yuyang Han, Congcong Bai, Bing Lu, Qianwen Liu, Yang Zhao, Jiatao Zhang, Zhipan Zhang*, and Liangti Qu*, Stretchable Supercapacitor at -30oC,Energy Environ. Sci., 2021, 14, 3075 - 3085
30. Yuanyuan Li, Nan Chen,* Zengling Li, Huibo Shao, Xiaotong Sun, Feng Liu,* Xiaoting Liu, Qiang Guo, and Liangti Qu*, “Reborn Three-Dimensional Graphene with Ultrahigh Volumetric Desalination Capacity”,Adv. Mater.2021, 2105853.
31. Chunlong Dai, Linyu Hu, Xuting Jin, Hao Chen, Xinqun Zhang, Shaohua Zhang, Li Song, Hongyun Ma, Maowen Xu, Yang Zhao, Zhipan Zhang,* Huhu Cheng, and Liangti Qu*, “A Cascade Battery: Coupling Two Sequential Electrochemical Reactions in a Single Battery”,Adv. Mater.2021, 33, 2105480.
32. Shichen Xu, Yeye Wen, Zhuo Chen, Nannan Ji, Zhigang Zou, Mingmao Wu,* Liangti Qu,* and Jin Zhang*, “Vertical Graphene Arrays as Electrodes for Ultra-High Energy Density AC Line-Filtering Capacitors”,Angew. Chem. Int. Ed.2021, 60, 24505 –24509.
33. Houze Yao, Panpan Zhang, Ce Yang, Qihua Liao, Xuanzhang Hao, Yaxin Huang, Miao Zhang, Xianbao Wang, Tengyu Lin, Huhu Cheng,* Jiayin Yuan* and Liangti Qu*, “Janus-interface engineering boosting solar steam towards high-efficiency water collection”,Energy Environ. Sci., 2021, 14, 5330–5338.
34. Houze Yao, Panpan Zhang, Yaxin Huang, Huhu Cheng,* Chun Li, and Liangti Qu*, “Highly Efficient Clean Water Production from Contaminated Air with a Wide Humidity Range”,Adv. Mater.2020, 32, 1905875.
35. Bing Lu, Feng Liu, Guoqiang Sun, Jian Gao, Tong Xu, Yukun Xiao, Changxiang Shao, Xuting Jin, Hongsheng Yang, Yang Zhao, Zhipan Zhang, Lan Jiang, and Liangti Qu*, “Compact Assembly and Programmable Integration of Supercapacitors”,Adv. Mater.2020, 32, 1907005.
36. Hanxue Liang, Qihua Liao, Nan Chen,* Yuan Liang, Guiqin Lv,* Panpan Zhang, Bing Lu, and Liangti Qu*, “Thermal Efficiency of Solar Steam Generation Approaching 100% through Capillary Water Transport”,Angew. Chem. Int. Ed.2019, 58, 19041 – 19046.
37. Mingmao Wu, Fengyao Chi, Hongya Geng, Hongyun Ma, Miao Zhang, Tiantian Gao, Chun Li & Liangti Qu*, “Arbitrary waveform AC line filtering applicable to hundreds of volts based on aqueous electrochemical capacitors”,Nat. Commun.2019, 10: 2855. https://doi.org/10.1038/s41467-019-10886-7.
38. Yaxin Huang, Huhu Cheng,* Ce Yang, Houze Yao, Chun Li and Liangti Qu*, “All-region-applicable, continuous power supply of graphene oxide composite”,Energy Environ. Sci., 2019, 12, 1848—1856.
39. Hongya Geng, Qiang Xu, Mingmao Wu, Hongyun Ma, Panpan Zhang, Tiantian Gao, Liangti Qu*, Tianbao Ma* & Chun Li*, “Plant leaves inspired sunlight-driven purifier for high-efficiency clean water production”,Nat. Commun.2019, 10: 1512. https://doi.org/10.1038/s41467-019-09535-w.
40. Tong Xu, Zhipan Zhang,* and Liangti Qu*, “Graphene-Based Fibers: Recent Advances in Preparation and Application”,Adv. Mater.2019, 1901979.
41. Tong Xu, Xiaoteng Ding, Yaxin Huang, Changxiang Shao, Long Song, Xue Gao, Zhipan Zhang and Liangti Qu*, “An efficient polymer moist-electric generator”,Energy Environ. Sci., 2019, 12, 972 – 978.
42. Ce Yang, Yaxin Huang, Huhu Cheng*, Lan Jiang, Liangti Qu*, “Rollable, stretchable, and reconfigurable graphene hygroelectric generators”,Adv.Mater.,2019, 31,1805705.
43. Panpan Zhang, Feng Liu, Qihua Liao, Houze Yao, Hongya Geng, Huhu Cheng, Chun Li, and Liangti Qu*, “A Microstructured Graphene/Poly(N-isopropylacrylamide) Membrane for Intelligent Solar Water Evaporation”,Angew. Chem. Int. Ed.2018, 57, 16343 –16347.
44. Hongya Geng, Ke Zhou, Jiajia Zhou, Hongyun Ma, Cunjing Lv, Chun Li,* Zhiping Xu,* and Liangti Qu*, “Sunlight-Driven Water Transport via a Reconfigurable Pump”,Angew. Chem. Int. Ed.2018, 57, 15435 –15440.
45. Yaxin Huang, Huhu Cheng*, Ce Yang, Panpan Zhang, Qihua Liao, Houze Yao, Gaoquan Shi, Liangti Qu*, “Interface-mediated hygroelectric generator with an output voltage approaching 1.5 volts”,Nat. Commun., 2018, 9, 4166.
46. Huhu Cheng,* Yaxin Huang, Fei Zhao, Ce Yang, Panpan Zhang, Lan Jiang, Gaoquan Shi, and Liangti Qu*, “Spontaneous power source in ambient air of a well-directionally reduced graphene oxide bulk”,Energy Environ. Sci., 2018, 11, 2839—2845.
47. Guoqiang Sun, Hongsheng Yang, Guofeng Zhang, Jian Gao, Xuting Jin, Yang Zhao, Lan Jiang and Liangti Qu*, “A capacity recoverable zinc-ion micro-supercapacitor”,Energy Environ. Sci., 2018,11, 3367 – 3374.
48. Kun Gao, Bin Wang, Li Tao, Benjamin V. Cunning, Zhipan Zhang, Shuangyin Wang,* Rodney S. Ruoff,* and Liangti Qu*, “Efficient Metal-Free Electrocatalysts from N-Doped Carbon Nanomaterials: Mono-Doping and Co-Doping”,Adv. Mater.2018, 1805121.
49. Liang Y, Zhao F, Cheng Z.H., Deng Y.X., Xiao Y.K., Cheng H.H., Zhang P.P., Huang Y.X., Shao H.B.*, and Qu L.T.*, “Electric Power Generation via Asymmetric Moisturizing of Graphene Oxide for Flexible, Printable and Portable Electronics”,Energy Environ. Sci., 2018,11, 1730 – 1735.
50. Zhao F, Zhou X.Y., Shi Y, Qian X, Alexander M, Zhao X.P., Mendez S, Yang R.G.*, Qu L.T.*, and Yu G.H.*, “Highly efficient solar vapour generation via hierarchically nanostructured gels”,Nat. Nanotechnol., 2018, 13, 489–495.
51. Cui L.F., Zhang P.P., Xiao Y.K., Liang Y, Liang H.X., Cheng Z.H., and Qu L.T.*, “High Rate Production of Clean Water Based on the Combined Photo-Electro-Thermal Effect of Graphene Architecture”,Adv. Mater., 2018, 30, 1706805.
52. Cheng H., Huang Y., Shi G., Jiang L., Qu L.T.*, “Graphene-Based Functional Architectures: Sheets Regulation and Macrostructure Construction toward Actuators and Power Generators”,Acc. Chem. Res.,2017,50(7), 1663–1671.
53. Yu X., Cheng H., Zhang M., Zhao Y., Qu L.T.*, Shi G.Q.*, “Graphene-based smart materials”,Nature Reviews Materials, 2017, 2, 17046.
54. Zhao Y*, Han Q, Cheng Z.H., Jiang L, and Qu L.T.*, “Integrated graphene systems by laser irradiation for advanced devices”,Nano Today, 2017, 12, 14-30.
55. Zhao F, Wang L.X., Zhao Y, Qu L.T.*,and Dai L.M.*, “Graphene Oxide Nanoribbon Assembly toward Moisture-Powered Information Storage”,Adv. Mater.,2017, 29(3), 1604972.
56. Wang X.P., Gao J, Cheng Z.H., Chen N, and Qu L.T.*,“A Responsive Battery with Controlled Energy Release”,Angew. Chem. Int. Ed., 2016, 128(47), 14863-14867.
57. Han Q., Wang B., Gao J., and Qu L.T.*, “Graphitic Carbon Nitride/Nitrogen-Rich Carbon Nanofibers: Highly Efficient Photocatalytic Hydrogen Evolution without Cocatalysts”,Angew. Chem. Int. Ed., 2016, 55, 10849-10853.
58. Jiang Y., Shao H.B., Li C.X., Xu T., Zhao Y., Shi G.Q., Jiang L., and Qu L.T.*,“Versatile Graphene Oxide Putty-Like Material”,Adv. Mater., 2016, 28(46), 10287-10292.
59. Zhao F, Liang Y, Cheng H.H., Jiang L, and Qu L.T.*, “Highly efficient moisture-enabled electricity generation from graphene oxide frameworks”,Energy Environ. Sci., 2016, 9(3), 912-916.
60. Cheng H.H., Ye M.H., Zhao F, Hu C.G., Zhao Y, Liang Y, Chen N, Chen S.L., Jiang L, and Qu L.T.*, “A General and Extremely Simple Remote Approach toward Graphene Bulks with In Situ Multifunctionalization”,Adv. Mater., 2016, 28(17), 3305-3312.
61. Zhao F, Zhao Y, Cheng H.H. and Qu L.T.*,“A Graphene Fibriform Responsor for Sensing Heat, Humidity, and Mechanical Changes”,Angew. Chem. Int. Ed., 2015, 54(49), 14951–14955.
62. Han Q., Wang B., Zhao Y., Cheng H.H. and Qu L.T.*,“A Graphitic-C3N4"Seaweed" Architecture for Enhanced Hydrogen Evolution”,Angew. Chem. Int. Ed., 2015, 54(39), 11433–11437.
63. Zhao F, Cheng H.H., Zhang Z.P., Jiang L and Qu L.T.*, “Direct Power Generation of a Graphene Oxide Film under Moisture”,Adv. Mater., 2015, 27(29), 4351–4357.
64. Dai L.M.*, Xue Y.H., Qu L.T.*, Choi H.J., and Baek J.B.*, “Metal-Free Catalysts for Oxygen Reduction Reaction”,Chem. Rev.,2015, 115(11), 4823–4892.
65. Hu C.G., Song L, Zhang Z.P.*, Chen N, Feng Z.H., andQu L.T.*, “Tailored Graphene Systems for Unconventional Applications in Energy Conversion and Storage Devices”,Energy Environ. Sci., 2015, 8(1), 31–54.
66. Zhao Y, Zhao F, Wang X.P., X u C.Y., Zhang Z.P., Shi G.Q. and Qu L.T.*,“Graphitic Carbon Nitride Nanoribbons: Graphene-Assisted Formation and Synergic Function for Highly Efficient Hydrogen Evolution”,Angew. Chem. Int. Ed.,2014, 53, 13934–13939.
67. Hu C.G., Zheng G.P., Zhao F, Shao H.B.*, Zhang Z.P., Chen N and Jiang L, Qu L.T.*, "A powerful approach to functional graphene hybrids for high performance energy-related applications”,Energy Environ. Sci., 2014, 7 (11), 3699–3708.
68. Zhao Y., Hu C.G., Song L., Wang L.X., Shi G.Q. and Dai L.M., Qu L.T.*, “Functional Graphene Nanomesh Foam”,Energy Environ. Sci., 2014,7, 1913–1918.
69. Cheng H.H., Hu Y., Zhao F., Dong Z.L., Wang Y.H., Chen N., Zhang Z.P., Qu L.T.*, “Moisture-Activated Torsional Motor of Graphene Fiber”,Adv. Mater., 2014, 26, 2909–2913.
70. Zhao Y., Song L., Zhang Z.P.* Qu L.T.*, “Stimulus-responsive Graphene Systemstowards Actuator Applications”,Energy Environ. Sci., 2013, 6, 3520–3536.
71. Cheng H., Liu J., Zhao Y., Hu H.G., Zhang Z.P., Chen N., Jiang L., Qu L.T.*, “Graphene Fibers with Predetermined Deformation as Moisture-Triggered Actuators and Robots”,Angew. Chem. Int. Ed., 2013, 52, 10482–10486.
72. Meng Y.N., Zhao Y., Hu C.G., Cheng H.H., Hu Y., Zhang Z.P., Shi G.Q., Qu L.T.*, “All-Graphene Core-Sheath Microfibers for All-Solid-State, Stretchable Fibriform Supercapacitors and Wearable Electronic Textiles”,Adv. Mater., 2013, 25(16), 2326–2331.
73. Zhao Y., Liu J., Hu Y., Cheng H., Hu C., Jiang C., Jiang L., Cao A.Y., Qu L.T.*, “Highly Compression-Tolerant Supercapacitor Based on Polypyrrole-mediated Graphene Foam Electrodes”,Adv. Mater., 2013, 25(4), 591–595.
74. Hu C.G., Zhao Y., Cheng H., Wang Y., Dong Z., Jiang C., Zhai X., Jiang L., Qu L.T.*, “Graphene Microtubings: Controlled Fabrication and Site-specific Functionalization”,Nano Lett., 2012,12(11), 5879–5884.
75. Zhao Y., Hu C.G., Hu Y., Cheng H.H., Shi G.Q., Qu L.T.*, “A Versatile, Ultralight, Nitrogen-doped Graphene Framework”,Angew. Chem. Int. Ed., 2012, 124(45), 11533–11537.
76. Zhang Z. P.*, Zhang J., Chen N., Qu L.T.*, “Graphene Quantum Dots: An Emerging Material for the Energy-Related Applications and Beyond”,Energy Environ. Sci., 2012, 5, 8869–8890.
77. Hu C.G., Cheng H.H., Zhao Y., Hu Y., Liu Y., Dai L.M., Qu L.T.*, “Newly-Designed Complex Ternary Pt/PdCu Nanoboxes Anchored on Three-Dimensional Graphene Framework for Highly Efficient Ethanol Oxidation”,Adv. Mater., 2012,24(40), 5493–5498.
78. Dong Z.L., Jiang C.C., Cheng H.H., Zhao Y., Shi G.Q., Jiang L., Qu L.T.*, “Facile fabrication of light, flexible and multifunctional graphene fibers”,Adv. Mater., 2012, 24 (14), 1856–1861.
79. Li Y., Zhao Y., Cheng H., Hu Y., Shi G.Q., Dai L.M., Qu L.T.*, “Nitrogen-doped graphene quantum dots with oxygen-rich functional groups”,J. Am. Chem. Soc., 2012 134 (1), 15–18.
80. Li Y., Hu Y., Zhao Y., Shi G. Q., Deng L., Hou Y. B., Qu L.T.*, An electrochemical avenue to green-luminescent graphene quantum dots as potential electron-acceptors for photovoltaics,Adv. Mater., 2011, 23, 776–780.
81. Qu L.T., Dai L. M., Stone M., Xia Z. H., Wang Z. L., Carbon nanotube arrays with strong shear binding-on and easy normal lifting-off,Science, 2008, 322, 238–242.
82. Qu L.T., Du F., Dai L. M., Preferential syntheses of semiconducting vertically-aligned single-walled carbon nanotubes for direct use in FETs,Nano Lett.,2008, 8, 2682–2687.
83. Qu L.T., Dai L. M., Gecko-Foot-Mimetic Aligned Single-Walled Carbon Nanotube Dry Adhesives with Unique Electrical and Thermal Properties,Adv. Mater., 2007, 19, 3844–3849.
84. Qu L.T., Dai L. M., Osawa E., Shape/size-controlled syntheses of metal nanoparticles for site-selective modification of carbon nanotubes,J. Am. Chem. Soc., 2006, 128 (16): 5523–5532.
85. Qu L.T., Dai L. M., Substrate-enhanced electroless deposition of metal nanoparticles on carbon nanotubes,J. Am. Chem. Soc., 2005, 127 (31): 10806–10807.
86. Qu L.T., Shi G. Q., Wu X. F., Fan B., Facile route to silver nanotubes,Adv. Mater., 2004, 16 (14): 1200–1203.
发明专利:
1. 电势差发电器件及其制备方法和集成发电模组
清华大学
曲良体; 王赢; 程虎虎
公开日期: 2025-05-09 申请日期: 2025-01-07 公开号: CN119965381A

2. 发电器件及其制备方法和用电设备
清华大学
曲良体; 卢冰; 程虎虎
公开日期: 2025-04-18 申请日期: 2024-11-22 公开号: CN119853499A

3. 一种曲率梯度超结构蒸发铸造诱导轻质高强结构材料
清华大学
曲良体; 卢冰; 程虎虎
公开日期: 2024-11-22 申请日期: 2024-07-03 公开号: CN118993046A

4. 一种轻质双取向高导热石墨烯泡沫材料及其制备方法
清华大学
曲良体; 卢冰; 程虎虎
公开日期: 2024-11-15 申请日期: 2024-07-03 公开号: CN118954490A

5. 基于植物体生物能的活体发电器件及发电装置
清华大学
曲良体; 程虎虎; 李溥滢
公开日期: 2024-05-14 申请日期: 2024-02-06 公开号: CN118041128A

6. 热管理织物及其制备方法和应用
清华大学
曲良体; 朱凯旋; 程虎虎; 廖启华
公开日期: 2024-05-10 申请日期: 2024-03-06 公开号: CN118007421A

7. 界面离子-电子转化增强的湿气发电器件及发电装置
清华大学
曲良体; 李溥滢; 程虎虎
公开日期: 2024-04-05 申请日期: 2024-01-15 公开号: CN117833712A

8. 基于电极电势差的发电装置及其发电方法、发电器件
清华大学
曲良体; 王海燕; 何天程; 程虎虎
公开日期: 2024-03-15 申请日期: 2024-02-18 公开号: CN117713586A

9. 多级耦合水诱导发电器件和发电装置
清华大学
李溥滢; 程虎虎; 曲良体
公开日期: 2023-11-03 申请日期: 2023-07-27 公开号: CN116995950A

10. 电化学滤波电容器电极材料及其制备方法和应用
清华大学
曲良体; 胡亚杰; 程虎虎
公开日期: 2023-07-25 申请日期: 2023-05-16 公开号: CN116487190A

11. 电化学滤波电容器及其制备方法和应用
清华大学
曲良体; 胡亚杰; 程虎虎
公开日期: 2023-06-27 申请日期: 2023-05-16 公开号: CN116344221A

12. 一种聚苯胺微结构以及制备方法和应用
中国科学院理化技术研究所
郑美玲; 王荣荣; 张维彩; 金峰; 董贤子; 曲良体; 程虎虎
公开日期: 2023-06-20 申请日期: 2021-12-17 公开号: CN116265510A

13. 亲水性多孔材料的制备方法及基于其的快速水蒸发系统
清华大学
曲良体; 朱凯旋; 程虎虎
公开日期: 2023-05-26 申请日期: 2023-01-30 公开号: CN116162283A

14. 平面异质聚电解质发电器及其制备方法和应用
清华大学
曲良体; 何天程; 程虎虎
公开日期: 2023-01-17 申请日期: 2022-11-15 公开号: CN115622443A

15. 聚合物发电膜及其制备方法、发电装置
清华大学
曲良体; 白佳昕; 程虎虎
公开日期: 2022-11-01 申请日期: 2022-07-27 公开号: CN115260669A

16. 一种耐低温且耐高电压的对称微型超级电容器
北京理工大学
宋丽; 靳绪庭; 张志攀; 曲良体
公开日期: 2022-09-27 申请日期: 2022-06-21 公开号: CN115116757A

17. 集成辐射-蒸发冷却材料及其制备方法
清华大学
曲良体; 姚厚泽; 程虎虎
公开日期: 2022-09-13 申请日期: 2022-06-06 公开号: CN115045111A

18. MXenes拓扑结构的调控方法、MXenes凝胶膜电极和储能器件
清华大学
曲良体; 马鸿云
公开日期: 2022-06-03 申请日期: 2022-01-20 公开号: CN114572987A

19. 自适应的电极材料孔结构的重塑方法、电极材料及其应用
清华大学
曲良体; 马鸿云
公开日期: 2022-05-31 申请日期: 2022-01-20 公开号: CN114566390A

20. 一种太阳能水蒸发材料
TSINGHUA UNIVERSITY
QU LIANGTI; YAO HOUZE; CHENG HUHU
公开日期: 2022-05-24 申请日期: 2021-04-06 公开号: CN113149114B
科研项目:
1. 低维共轭碳纳米结构及其功能化
立项时间: 2014-2017 项目经费:2000000

2. 氧化石墨烯湿气发电膜
立项时间: 2017-2020 项目经费:650000

3. 本征态及功能化修饰单、少层石墨烯的电化学驱动响应性研究
立项时间: 2012-2015 项目经费:650000

4. 纳米介孔功能高分子/碳纳米管复合阵列的制备及应用研究
立项时间: 2011-2013 项目经费:210000

5. 新型石墨烯光热净水解决方案
立项时间: 2020-2021

6. 光热 - 蒸发 界面分离:太阳能水 蒸发 材料设计制备与高效水收集研究
立项时间: 2020

7. 应用于催化、光声学和表面等离子体光子学的三维石墨烯研究
立项时间: 2018-2020

8. 具有抗菌性能的石墨烯/聚离子液体复合气凝胶空气中清洁水制备研究
立项时间: 2019-2021

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