李豔

2023年03月27日 18:52  點擊:[]

李豔  老師簡曆

 

 

院系2003网站太阳集团礦物加工工程系

職務/職稱:校聘教授

E-mail: li-yan@usc.edu.cn

 

教育經曆(從大學本科開始,按時間倒排序):

2015/09-2018/07,中南大學,冶金與環境工程學院博士

2012/092015/07,中南大學,冶金與環境工程學院,碩士 

2008/092012/07,中南大學,冶金與環境工程學院,學士

 

 

工作經曆(科研與學術工作經曆,按時間倒排序):

2020.10-至今 2003网站太阳集团 資環安學院 特聘教授

2018/07-2020/10 深圳大學 微納光電子學院 博士後

 

發表論文

[1] Li T, Chen Z, Bai F, Li C, Li Y*. Diluted low concentration electrolyte for interphase stabilization of high-voltage LiNi0.5Mn1.5O4 cathode. J. Energy Chem., 2023:83. 404-409. [SCI, 一區,IF=11.03]

[2] Li T, Zhou Y, Chen Z, Li Y*. Spray pyrolysis technology-based closed-loop for regenerating single-crystal cathodes from spent lithium-ion batteries [J].Green Chem., 2023, 25, 4022-4028 [SCI, 一區,IF=13.599]

[3] Chen Z, Wang B, Li Y, et al. Stable Solvent-Derived Inorganic-Rich Solid Electrolyte Interphase [SEI] for High-Voltage Lithium-Metal Batteries [J]. ACS applied materials & interfaces, 2022[24]:14. 28014-28020.JCR1, IF = 10.383

[4] Bai F, Li Y, et al. Targeted Stabilization of Solid Electrolyte Interphase and Cathode Electrolyte Interphase in High-Voltage Lithium-Metal Batteries by an Asymmetric Sustained-Release Strategy [J]. Journal of Power Sources2022:548,232045. JCR1, IF = 9.79

[5] Li C, Li Y, et al. Hybrid diluents enable localized high-concentration electrolyte with balanced performance for high-voltage lithium-metal batteries, Chinese Chemical Letters, 2022, 107852. JCR1, IF = 8.455

[6] Li Y, Wang R, et al. Emerging two-dimensional noncarbon nanomaterials for flexible lithium-ion batteries: opportunities and challenges [J]. Journal of Materials Chemistry A, 2019, 7, 25227-25246.JCR1, IF = 10.66

[7] Li Y, Wang R, et al. Flexible Li[Li0.2Ni0.13Co0.13Mn0.54]O2/carbon nanotubes/nanofibrillated celluloses composite electrode for high-performance lithium-ion battery [J]. Frontiers in Chemistry, 2019, 7, 25227-25246.JCR1, IF = 3.51

[8] Li Y, Li X, et al.. A novel hierarchical precursor of densely integrated hydroxide nanoflakes on oxide microspheres toward high-performance layered Ni-rich cathode for lithium ion batteries [J]. Materials Chemistry Frontiers, 2018, 2: 1822-1828. JCR1, IF = 8.68

[9] Li Y, Li X, et al. One-step synthesis of Li-doped NiO as high-performance anode material for lithium ion batteries[J]. Ceramics International, 2016, 42:14565-14572. JCR1, IF = 3.5

[10] Li Y, Li X, et al. Distinct impact of cobalt salt type on the morphology, microstructure, and electrochemical properties of Co3O4, synthesized by ultrasonic spray pyrolysis[J]. Journal of Alloys & Compounds, 2017, 696:836-843. JCR1, IF = 4.12

[11] Li Y, Li X, et al. Spray pyrolysis synthesis of nickel-rich layered cathodes LiNi1−2xCoxMnxO2 [x = 0.075, 0.05, 0.025] for lithium-ion batteries[J]. Journal of Energy Chemistry, 2018,27: 447-450. JCR1,IF = 4.65

[12] Li Y, Li X, et al. An Ostwald ripening route towards Ni-rich layered cathode material with cobalt-rich surface for lithium ion battery [J]. Science China Materials, 2017:1-9. JCR1,IF = 3.956

 

專利:

[1] 王志興,李豔等,一種改性氧化鎳負極材料及其制備方法,CN105514421B 

[2] 王志興,李豔等,一種具有富钴表層的高鎳正極材料及其制備方法和應用,CN106898751B 

[3] 王志興,李豔等,一種微米級單晶鎳酸锂及其制備方法和應用,CN106946296B 

[4] 王接喜,李豔等,三元正極材料、其前驅體及該材料和前驅體的制備方法,CN107585794A

 

 

 

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