李廷贤 研究员
所在系所制冷与低温工程研究所
办公电话021-34206335
通讯地址beat365网页版登录官网A楼408室
电子邮件Litx@sjtu.edu.cn
个人主页http://www.sjtuirc.sjtu.edu.cn
Selected as Featured Article
Selected as Cover Article
Selected as Research Highlights by NSFC
Selected as Research Highlights by NSFC
Selected as Research Highlights by Disruptive Technology Letters
Selected as Editors' Highlights
Selected as ESI Highly Cited Paper
Selected as ESI Hot Paper
Selected as ESI Highly Cited Paper of Royal Society of Chemistry
Selected as Cover Article
Selected as ESI Highly Cited Paper
Selected as ESI Highly Cited Paper
Selected as ESI Highly Cited Paper Selected as ESI Highly Cited Paper Selected as Cover Paper Selected as ESI Highly Cited Paper
[13] S. Wu, T.X. Li‡,*, M.Q. Wu, J.X. Xu, Y.H. Hu, J.W. Chao, T.S. Yan, R.Z. Wang. Highly Thermally Conductive and Flexible Phase Change Composites Enabled by Polymer/Graphite Nanoplatelet-based Dual Networks for Efficient Thermal Management. Journal of Materials Chemistry A 8 (2020) 20011-20020.
https://doi.org/10.1039/D0TA05904H
(*Corresponding Author and ‡Co-first Author)
[14] J.X. Xu, J.W. Chao, T.X. Li‡,*, T.S. Yan, S. Wu, M.Q. Wu, B.C. Zhao, R.Z. Wang. Near-Zero-Energy Smart Battery Thermal Management Enabled by Sorption Energy Harvesting from Air. ACS Central Science 6 (2020) 1542-1554.
https://dx.doi.org/10.1021/acscentsci.0c00570
(*Corresponding Author and ‡Co-first Author)
[15] S. Wu, T.X. Li‡,*, Z. Tong, J.W. Chao, T.Y. Zhai, J.X. Xu, T.S. Yan, M.Q. Wu, Z.Y. Xu, H. Bao, T. Deng, R.Z. Wang. High-Performance Thermally Conductive Phase Change Composites by Large-Size Oriented Graphite Sheets for Scalable Thermal Energy Harvesting. Advanced Materials 31(2019) 1905099:1-9.
https://doi.org/10.1002/adma.201905099
(*Corresponding Author and ‡Co-first Author)
[16] T.S. Yan, T.X. Li‡,*, J.X. Xu, J.W. Chao, R.Z. Wang, Yuri Aristov, L. Gordeeva, P. Dutta, S. Murthy. Ultrahigh-Energy-Density Sorption Thermal Battery Enabled by Graphene Aerogel-based Composite Sorbents for Thermal Energy Harvesting from Air. ACS Energy Letters 6 (2021) 1795-1802.
https://doi.org/10.1021/acsenergylett.1c00284
(*Corresponding Author and ‡Co-first Author)
[17] M.Q. Wu, T.X. Li‡,*, P.F. Wang, S. Wu, R.Z. Wang, J. Lin. Dual-Encapsulated Highly Conductive and Liquid-Free Phase Change Composites Enabled by Polyurethane/Graphite Nanoplatelets Hybrid Networks for Efficient Energy Storage and Thermal Management. Small 2105647 (2021) 1-10.
https://doi.org/10.1002/smll.202105647
(*Corresponding Author)
[18] S. Wu, T.X. Li*, Z.Y. Zhang, T. Li, R.Z. Wang. Photoswitchable Phase Change Materials for Unconventional Thermal Energy Storage and Upgrade. Matter 4 (2021) 3385-3399.
https://doi.org/10.1016/j.matt.2021.09.017
(*Corresponding Author)
[19] P.F. Wang, J.X. Xu, R.Z. Wang, T.X. Li*. Pathways for Continuous Electricity Generation from Ambient Moisture. Matter 6 (2023) 19-22.
https://doi.org/10.1016/j.matt.2022.12.007
(*Corresponding Author)
[20] S. Wu, X. Zhang, R.Z. Wang, T.X. Li*. Progress and Perspectives of Liquid Metal Battery. Energy Storage Materials 57 (2023) 205-227.
https://doi.org/10.1016/j.ensm.2023.02.021
(*Corresponding Author)
[21] S. Wu, Z.Y. Zhang, T. Li, R.Z. Wang, T.X. Li*. Optically-controlled Variable-temperature Storage and Upgrade of Thermal Energy by Photoswitchable Phase Change Materials. ACS Materials Letters 5 (2023) 2019-2027.
https://doi.org/10.1021/acsmaterialslett.3c00351
(*Corresponding Author)
[22] Z.Y. Bai, P.F. Wang, J.X. Xu, R.Z. Wang, T.X. Li*. Progress and Perspectives of Sorption-Based Atmospheric Water Harvesting for Sustainable Water Generation: Materials, Devices, and Systems. Science Bulletin 69 (2024) 671-687.
(*Corresponding Author).
https://doi.org/10.1016/j.scib.2023.12.018
[23] T.X. Li‡,*, R.Z. Wang, H. Li. Progress in the Development of Solid-Gas Sorption Refrigeration Thermodynamic Cycle Driven by Low-Grade Thermal Energy. Progress in Energy and Combustion Science 40 (2014) 1-58.
http://dx.doi.org/10.1016/j.pecs.2013.09.002
(*Corresponding Author and ‡First Author)
10篇代表性论文:
Nature Review Materials (2024). 【Selected as Cover Article and Featured Article】
Nature Water 1 (2023) 971-981. 【Research Highlights by NSFC】
Nature Communications 14 (2023) 8060:1-12.
Nature Communications 13 (2022) 6771:1-11. 【Research Highlights by Disruptive Technology Letters】
Nature Communications 13 (2022)193: 1-10. 【Selected as Editors' Highlights】
Nano Energy 89 (2021) 106338:1-11. 【Selected as ESI Highly Cited Paper】
Energy Storage Materials 42 (2021) 380-417. 【Selected as ESI Highly Cited Paper】
Angew Chem-Int Edit 59 (2020) 2-11. 【Selected as ESI Highly Cited Paper】
Advanced Materials 31(2019) 1905099:1-9. 【Selected as ESI Highly Cited Paper】