l  學(xué)術(shù)論文 [1]  Z. M Huang*, Z. Z. Li, Y. D. Wang, J. L.   Cong, X. L. Wu, X. H. Song, Y. X. Ma, H. F. Xiang*, Y. H.   Huang*,  Regulating Zn(002) Deposition  toward Long Cycle Life for Zn Metal Batteries, ACS   Energy Lett. 2023, 8, 372–380.  [2]  Z. Z Li, Y. Q. Liao, Y. D. Wang, J. L.  Cong , H. J. Ji, Z. M. Huang *, Y. H.  Huang *, A co-solvent in aqueous electrolyte towards    ultralong-life rechargeable zinc-ion batteries. Energy Storage  Mater. 2023, 56, 174-182.     [3]  Z. M. Huang, J. Ren, W. Zhang, M. L. Xie,   Y. K. Li, D. Sun, Y. Shen*; Y. H. Huang*; Protecting the Li-metal anode   in a Li–O2 battery by using boric acid as an SEI-forming additive,       Adv. Mater, 2018, 30: 1803270.  [4]   Z.  M. Huang, H. P. Zeng, M. L. Xie, X. Lin, Z. M. Huang; Y. Shen*, Y. H.   Huang*; A Stable Lithium-oxygen battery electrolyte based on fully   methylated cyclic ether, Angew. Chem. Int. Ed, 2019, 58:2345-2349.  [5]   Z. M. Huang, J. T. Meng, W. Zhang,  Y. Shen*, Y. H. Huang*; 1,3-Dimethyl-2-imidazolidinone: an ideal   electrolyte solvent for high-performance Li-O2 battery with pretreated Li       anode, Sci Bull, 2022,67,141-150. [6]   Z. M. Huang, J. T. Meng, M. L. Xie,  Y. Shen*, Y. H. Huang*; A pretreatment method to form high-quality   LiF-enriched solid-electrolyte interfaces for Li anode protection in       Li–O2 batteries, J.   Mater. Chem. A, 2020, 8,14198. [7]   Z. M. Huang, J. H. Hu, Y. F. Gong*;   Formation and aromatization of strained bicyclic pyrazolidines via tandem   reaction of alkyl 2-aroyl-1-chlorocyclopropanecarboxylates with       acylhydrazones, Org. Biomol. Chem, 2015, 13: 8561-6.  [8]   Z. M. Huang, Y. F. Gong*; A   straightforward sequence to alkyl 1H-pyrrole-2,5-dicarboxylates starting   from acylhydrazono esters and alkyl   2-aroyl-1-chlorocyclopropanecarboxylates, RSC Adv, 2016, 6:    22357-22363.  [9]   Y. K. Li; Z. M. Huang; P. K.  Kalambate, Y. Zhong, Z. M. Huang, M. L. Xie, Y. Shen*; Y. H. Huang*; V2O5   nanopaper as a cathode material with high capacity and long cycle life   for rechargeable aqueous zinc-ion battery, Nano Energy, 2019, 60,  752-759.  [10] M. L. Xie, Z. M. Huang, X. Lin, Y. K. Li, Z.  M. Huang, L. X. Yuan, Y. Shen*, Y. H. Huang*. Oxygen selective membrane   based on perfluoropolyether for Li-Air battery with long cycle life. Energy.   Storage. Mater, 2019, 20, 307-314.  [11] W. Zhang, D. Sun, Z. M. Huang, Y. Shen*, Y. H.  Huang*. Objectively evaluating the cathode performance of lithium-oxygen  batteries. Adv. Energy Mater, 2017, 7, 1602938. [12] M. L. Xie, X. Lin, Z. M. Huang, Y. K. Li, Y.   Zhong, Z. X. Cheng, L. X. Yuan, Y. Shen*; X. Lu, T.Y. Zhai, Y. H. Huang*;   A Li–Al–O Solid‐State Electrolyte with High Ionic Conductivity and Good   Capability to Protect Li Anode, Adv Funct. Mater, 2019, 30:  1905949.  [13] W. Zhang, D. Sun, Z. M. Huang, J. Zhou, H.  Yan, Y. Shen*, Y. H. Huang*. “Promoting Li2O2 oxidation via  solvent-assisted redox shuttle process for low overpotential Li-O2   battery. Nano Energy, 2016, 30, 43–51.  [14] P. K Kalambate, Z. M. Huang, Y. K. Li, Y.   Shen*, M. L. Xie, Y. H. Huang*, A. K. Srivastava, TrAC-Trend. Anal.  Chem, 2019, 115, 147-161. ●        授權(quán)專利 [1]  沈越,黃志梅,黃云輝;一種電解液及其應(yīng)用和產(chǎn)品,ZL201810836287.X  [2]  黃志梅,方淳,黃云輝,丁奕,楊艷,王天桃;一種鋰離子電池消防液及其制備方法和應(yīng)用, CN。  202011544240.X 
 
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