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Designing an asymmetric ether-like lithium salt to enable fast-cycling high-energy lithium metal batteries. Y.Xia, P. Zhou, X. Kong, J. Tian, W. Zhang, S. Yan, H Hui, H. Zhou, H. Dong, X. Chen, P. Wang, Z. Xu, L. Wan, B. Wang, K. Liu* Nature Energy, 2023, https://doi.org/10.1038/s41560-023-01282-z
Tuning the Li+ solvation structure by a “bulky coordinating” strategy enables nonflammable electrolyte for ultrahigh voltage lithium metal batteries. Y. Lu, W. Zhang, S. Liu, Q. Cao, S. Yan, H. Liu, W. Hou, P. Zhou, X. Song, Y. Ou, Y. Li, K. Liu* ACS Nano, 2023, Doi: 10.1021/acsnano.3c02948.
A fluorinated covalent organic framework with accelerated oxygen transfer nanochannels for high‐performance zinc-air batteries. Q. Cao, L. Wan, Z. Xu, W. Kuang, H. Liu, X. Zhang, W. Zhang, Y. Lu, Y. Yao, B. Wang, K. Liu* Advanced Materials, 2023, 2210550.
Engineering a passivating electric double layer for high performance lithium metal batteries. W. L. Zhang, Y. Lu, L. Wan, P. Zhou, Y. C. Xia, S. S. Yan, X. X Chen, H. Y. Zhou, H. Dong, K. Liu* Nature Communications, 2022, 13, 2029.
Rationally designed fluorinated amide additive enables the stable operation of lithium metal batteries by regulating the interfacial chemistry. P. Zhou, Y. C. Xia, W. H. Hou, S. S. Yan, H. Y. Zhou, W. L. Zhang, Y. Lu, P. C. Wang, K. Liu*. Nano letters 2022, 22, 5936-5943.
Nanoemulsion-coated Ni–Fe hydroxide self-supported electrode as an air-breathing cathode for high-performance zinc-air batteries. L. Wan, Z. A. Xu, Q. B. Cao, Y. W. Liao, B. G. Wang*, K. Liu*. Nano Letters, 2022, 22, 4535-4543.
Early braking of overwarmed lithium-ion batteries by shape-memorized current collectors. J. C. Jia, H. Liu, S. L. Liao, K. Liu*, Y. P. Wang* Nano Letters, 2022, 22, 22, 9122–9130
Zwitterionic matrix with highly delocalized anionic structure as an efficient lithium ion conductor. S. S. Yan, Y. Lu, F. X. Liu, Y. C. Xia, Q. Li, K. Liu* CCS Chemistry, 2022, DOI: 10.31635/ccschem.022.202202198
Strategies to enhance Li+ transference number in liquid electrolytes for better lithium batteries. Pan Zhou&, Xiaokun Zhang*, Yong Xiang*, K. Liu* Nano Research, 2022, 10.1007/s12274-022-4833-1
Lithium bromide-induced organic-rich cathode/electrolyte interphase for high-voltage and flame-retardant all-solid-state lithium batteries. H. Y. Zhou, S. S. Yan, J. Li, H. Dong, P. Zhou, L. Wan, X. X. Chen, W. L. Zhang, Y. C. Xia, P. C. Wang, B. G. Wang, K. Liu*. ACS Appl. Mater. Interfaces, 2022, DOI: 10.1021/acsami.2c05016
Novel urea-based molecule functioning as a solid electrolyte interphase enabler and LiPF6 decomposition inhibitor for fast-charging lithium metal batteries. Pan Zhou&, Yingchun Xia&, Yuhao Wu, Wenhui Hou&, Yang Lu&, Shuai Yan, Hangyu Zhou&, Weili Zhang&, Kai Liu* ACS Appl. Mater. Interfaces. 2022, 14, 38921−38930.
Regulating the growth of lithium dendrite by coating an ultra-thin layer of gold on separator for improving the fast-charging ability of graphite anode. S. S. Yan, X. X. Chen, P. Zhou, P. C. Wang, H. Y. Zhou, W. L. Zhang, Y. C. Xia, K. Liu* Journal of Energy Chemistry, 2022, 67, 467.
Supramolecular “flame-retardant” electrolyte enables safe and stable cycling of lithium-ion batteries. X. X. Chen, S. S. Yan, T. H. Tan, P. Zhou, J. X. Hou, X. N. Feng, H. Dong, P. C. Wang, D. Wang, B. G. Wang, M. G. Ouyang, K. Liu∗ Energy Storage Materials, 2022, 45, 182.
A thermoresponsive composite separator loaded with paraffin@SiO2 microparticles for safe and stable lithium batteries. H. Dong, P. C. Wang, S. S. Yan, Y. C. Xia, B. G. Wang∗, X. L. Wang∗, K. Liu∗ Journal of Energy Chemistry, 2021, 62, 423–430.
A review of fire-extinguishing agent on suppressing lithium-ion batteries fire. S. Yuan, C. Y. Chang, S. S. Yan, P. Zhou, X. M. Qian∗, M. Q. Yuan∗, K. Liu∗ Journal of Energy Chemistry, 2021, 62, 262–280.
Rational design on separators and liquid electrolytes for safer lithium-ion batteries. M. Q. Yuan, K. Liu∗ Journal of Energy Chemistry, 2020, 43, 58-70.
Anisotropic anion exchange membranes with extremely high water uptake for water electrolysis and fuel cells. Z. A. Xu, L. Wan, Y. W. Liao, P. C. Wang, K. Liu * and B. G. Wang* J. Mater. Chem. A, 2021, 9, 23485–23496
Electrospun Core-Shell Microfiber Separator with Thermal Triggered Flame-Retardant Properties for Lithium Ion Batteries. K. Liu, W. Liu, Y. C. Qiu, B. Kong, Y. M. Sun, Z. Chen, D. Zhuo, D. C. Lin, Y. Cui*. Science Advances, 2017, 3, e1601978. (Highlighted by Science, CNN, BBC, Daily Mail (UK); Chemistry World etc.)
Materials For Lithium Ion Battery Safety. K. Liu, Y. Y. Liu, D. C. Lin, A. Pei, Y. Cui*. Science Advances, 2018, 4, eaas9820.
Stretchable Lithium Metal Anode with Improved Mechanical and Electrochemical Cycling Stability. K. Liu, B. Kong, W. Liu, Y. M. Sun, M. S. Song, J. Chen, Y. Y. Liu, D. C. Lin, A. Pei, Y. Cui*. Joule, 2018, 2, 1857-1865.(Highlighted by Joule: Stretchable Electrode breakthrough: Archimedean Spiral Coil Lithium Anode)
Lithium Metal Anodes with an Adaptive 'Solid Liquid' Interfacial Protective Layer. K. Liu#, A. Pei#(contributed equally), H. R. Lee, B. Kong, N. Liu, D. Lin, Y. Liu, C. Liu, P.-C. Hsu, Z. Bao, and Y. Cui*. J. Am. Chem. Soc. 2017, 139, 4815-4820.(“Highly cited paper” on ESI. Highlighted by Science and Technology Daily and New Materials Online.)
Extending the Life of Lithium-Based Rechargeable Batteries by Reaction of Lithium Dendrites with a Novel Silica Nanoparticle Sandwiched Separator. K. Liu#, D. Zhuo#(contributed equally), H. W. Lee, W. Liu, D. C. Lin, Y. Y. Lu, Y. Cui* Advanced Materials. 2016, 29, 1603987. (“Highly cited paper” on ESI.)
Reversible and Adaptive Functional Supramolecular Materials: “Noncovalent Interaction” Matters. K. Liu, Y. T. Kang, Z. Q. Wang, X. Zhang*. Advanced Materials. 2013, 25, 5530-5548. (“Highly cited paper” on ESI.)
Supramolecular Photosensitizers with Enhanced Antibacterial Efficiency. K. Liu, Y. L. Liu, Y. X. Yao, H. X. Yuan, S. Wang, Z. Q. Wang, X. Zhang*. Angew. Chem. Int. Ed. 2013, 52, 8285-8289.
Extracting a Single Polyethylene Oxide Chain from a Single Crystal by a Combination of Atomic Force Microscopy Imaging and Single-Molecule Force Spectroscopy: Toward the Investigation of Molecular Interactions in Their Condensed States. K. Liu#, Y. Song#(contributed equally),W. Feng, N. N. Liu,W. K. Zhang*, X. Zhang. J. Am. Chem. Soc. 2011, 133, 3226-3229. (Highlighted by Nature Materials, NPG Asia Materials, NSFC.)
Superamphiphiles Based on Directional Charge-Transfer Interactions: From Supramolecular Engineering to Well-Defined Nanostructures. K. Liu, C. Wang, Z. B. Li, X. Zhang*. Angew. Chem. Int. Ed. 2011, 50, 4952-4956.