[1] J.X. Xu, P.F. Wang, Z.Y. Bai, H.H. Chen, R.Z. Wang, L.T. Qu,
T.X. Li*. Sustainable Moisture Energy.
Nature Reviews Materials (2024) (IF=83.5).
https://doi.org/10.1038/s41578-023-00643-0
(*Corresponding Author)
Selected as Featured Article
Selected as Research Highlights by NSFC
[2]
T.X. Li‡,*, T.S. Yan, P.F. Wang, J.X. Xu, X.Y. Huo, Z.Y. Bai, W. Shi, G.H. Yu, R.Z. Wang. Scalable and Efficient Solar-driven Atmospheric Water Harvesting Enabled by Bidirectional-aligned and Hierarchical-structured Nanocomposites.
Nature Water 1 (2023) 971-981.
https://doi.org/10.1038/s44221-023-00150-0
(*Corresponding Author and ‡First Author )
Selected as Research Highlights by NSFC
[3]
T.X. Li‡,*, M.Q. Wu, J.X. Xu, R.X. Du, T.S. Tan, P.F. Wang, Z.Y. Bai, R.Z. Wang, S.Q. Wang. Simultaneous Atmospheric Water Production and 24-hour Power Generation Enabled by Moisture-induced Energy Harvesting.
Nature Communications 13 (2022) 6771:1-11.
https://doi.org/10.1038/s41467-022-34385-4
(*Corresponding Author and ‡First Author )
Selected as Research Highlights by Disruptive Technology Letters
[4] Z.L. Liu, J.X. Xu, M. Xu, C.F. Huang, R.Z. Wang,
T.X. Li*, X.L. Huai. Ultralow-Temperature-Driven Water-Based Sorption Refrigeration Enabled by Low-Cost Zeolite-Likeporous Aluminophosphate.
Nature Communications 13 (2022) 193:1-10.
https://doi.org/10.1038/s41467-021-27883-4
(*Co-corresponding Author)
Selected as Editors' Highlights
[5] Y.G. Jing, Z.C. Zhao, X.L. Cao, Q.R. Sum, Y.P. Yuan,
T.X. Li*. Ultraflexible, Cost-Effective, and Scalable Polymer-based Phase Change Composites via Chemical Cross-linking for Wearable Thermal Management.
Nature Communications 14 (2023) 8060:1-12.
https://doi.org/10.1038/s41467-023-43772-4
(*Co-corresponding Author)
[6] S. Wu,
T.X. Li. Electrochemical Refrigeration-Taking control of salts.
Nature Energy 8 (2023) 226-227.
https://doi.org/10.1038/s41560-023-01219-6
[7] J.X. Xu,
T.X. Li‡,*, T.S. Tan, S. Wu, M.Q. Wu, J.W. Chao, X.Y. Huo, P.F. Wang, R.Z. Wang. Ultrahigh Solar-Driven Atmospheric Water Production Enabled by Scalable Rapid-Cycling Water Harvester with Vertically Aligned Nanocomposite Sorbent.
Energy & Environmental Science 14 (2021) 5979-5994.
https://doi.org/10.1039/D1EE01723C
(*Corresponding Author and ‡Co-first Author)
Selected as ESI Highly Cited Paper
Selected as ESI Hot Paper
Selected as ESI Highly Cited Paper of Royal Society of Chemistry
[8]
T.X. Li‡,*, M.Q. Wu, S. Wu, J.W. Chao, S.Z. Xiang, J.X. Xu, J.W. Chao, T.S. Yan, T. Deng, R.Z. Wang. Highly Conductive Phase Change Composites Enabled by Vertically-Aligned Reticulated Graphite Nanoplatelets for High-Temperature Solar Photo/Electro-Thermal Energy Conversion, Harvesting and Storage.
Nano Energy 89 (2021) 106338:1-11.
https://doi.org/10.1016/j.nanoen.2021.106338
(*Corresponding Author and ‡Co-first Author)
Selected as ESI Highly Cited Paper
[9] M.Q. Wu, S. Wu, Y.F. Cai, R.Z. Wang,
T.X. Li*. Form-Stable Phase Change Composites: Preparation, Performance, and Applications for Thermal Energy Conversion, Storage and Management.
Energy Storage Materials 42 (2021) 380-417.
https://doi.org/10.1016/j.ensm.2021.07.019
(*Corresponding Author)
Selected as ESI Highly Cited Paper
[10] J.X. Xu,
T.X. Li‡,*, J.W. Chao, S. Wu, T.S. Yan, W.C. Li, B.Y. Cao, R.Z. Wang. Efficient Solar-Driven Water Harvesting from Arid Air with Metal-Organic Frameworks Modified by Hygroscopic Salt.
Angewandte Chemie-International Edition 59 (2020) 2-11.
https://doi.org/10.1002/anie.201915170
(*Corresponding Author and ‡Co-first Author)
Selected as ESI Highly Cited Paper
Selected as Research Highlights by NSFC
[11] 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)
Selected as ESI Highly Cited Paper
[12] 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)
Selected as Cover Paper
[13] 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)
Selected as ESI Highly Cited Paper
[14] 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)
[15] 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)
[16] 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)
[17] 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)
[18] 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)
[19] 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)
[20] 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
[21] J.X. Xu, X.Y. Huo. T.S. Yan, P.F. Wang, Z.Y. Bai, J.W. Chao, R.G. Yang, R.Z. Wang,
T.X. Li*. All-in-one Hybrid Atmospheric Water Harvesting for All-day Water Production by Natural Sunlight and Radiative Cooling.
Energy & Environmental Science (2024) .
https:// doi.org/10.1039/D3EE04363K
(*Corresponding Autho)
[22]
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)