主要研究領域
高比能鋰離子電池材料、面向能源/資源過程的化工新技術及工藝設計
具體研究方向
(1)錳系正極材料(高純硫酸錳、四氧化三錳、磷酸錳鐵鋰、富鋰錳)
(2)矽基負極材料(納米矽、氣相沉積矽碳、多孔微米矽等)
(3)面向水處理/有機溶劑純化的太陽能界面蒸發光熱材料與技術、水處理過程污泥資源化利用技術
(4)人工智慧輔助的化工裝備與工藝設計
主持科研項目
1. 國家重點研發計畫項目子課題,2023YFC3207000,2023-2027.
2. 湖南省傑出青年科學基金項目,2023JJ10062,2023-2025.
3. 湖南省湘西州技術攻關“揭榜掛帥”項目,2022JBGS0006,2023-2025.
4. 勝華新材料科技(眉山)有限公司,2022-2027.
5. 山西省朔州市“揭榜掛帥”項目/三元炭素有限公司,2021-2023.
6. 粉末冶金國家重點實驗室研究課題,2022-2024.
7. 湖南省自然科學基金面上項目,2020JJ4107,2020-2022.
8. 中南大學創新驅動計畫,2020CX037,2020-2022.
9. 國家自然科學基金,21706292,2018-2020.
10. 湖南省自然科學基金,2017JJ3376,2017-2019.
11. 中國博士後科學基金特別資助,2016T90758,2016-2018.
12. 中國博士後科學基金面上項目,2015M582342,2015-2017.
部分學術論文
1. Flexible Janus black silicon photothermal conversion membranes for highly efficient solar-driven interfacial water purification, ACS Appl. Mater. Interfaces, 2024, 16, 26153–26166
2. Advanced micro/nanostructures silicon-based anode materials for high-energy lithium-ion batteries: From liquid- to solid-state batteries, Energy & Fuels, 2024, 38, 7693-7732
3. Nb2CTx MXene boosting PEO polymer electrolyte for all-solid-state Li-S batteries: two birds with one stone strategy to enhance Li conductivity and polysulfide adsorptivity, Rare Metals, 2023, 42, 2562 (Cover Story)
4. Optimization of Sr-doping boosting the structural stability for single crystalline LiNi0.8Co0.1Mn0.1O2 cathode to enhance its electrochemical performance at elevated voltage and temperature. Journal of Power Sources, 2022, 545, 231915
5. Dual-site single-atom catalysts with high performance for three-way catalysis, Advanced Materials, 2022, 34, 2201859
6. Natural halloysite nanotubes coated commercial paper or waste newspaper as highly-thermal-stable separator for lithium-ion batteries, Advanced Materials Technologies, 2022, 2200075
7. Two-dimensional graphitic carbon nitride-based membranes for filtration process: Progresses and challenges, Chemical Engineering Journal, 2022, 427, 130955
8. Facile electrochemical microbiosensor based on in situ self-assembly of Ag nanoparticles coated on Ti3C2Tx for in vivo measurements of chloride ions in the PD mouse brain, Analytical Chemistry, 2021, 93, 7647-7656
9. Polarized nucleation and efficient decomposition of Li2O2 for Ti2C MXene cathode catalyst under a mixed surface condition in lithium-oxygen batteries, Energy Storage Materials, 2021, 35, 669-678.
10. Polymerization inspired synthesis of MnO@carbon nanowires with long cycling stability for lithium ion battery anodes: growth mechanism and electrochemical performance, Dalton Transactions, 2021, 50, 535.
11. Chessboard-like silicon/graphite anodes with high cycling stability toward practical lithium-ion batteries, ACS Applied Energy Materials, 2021, 4, 775-783.
12. Highly efficient Nb2C MXene cathode catalyst with uniform O-terminated surface for lithium-oxygen batteries, Advanced Energy Materials, 2020, 2002721.
13. Ultra-lightweight Ti3C2Tx MXene modified separator for Li-S batteries: Thickness regulation enabled polysulfide inhibition and lithium ion transportation, Journal of Energy Chemistry, 2020, 42, 116-125. (JEC Best Paper Award)
14. Crumpled two-dimensional Ti3C2Tx MXene lamellar membranes for solvent permeation and separation, ACS Applied Nano Materials, 2020, 3, 1526-1534.
15. Chemically anchoring of SeS2 on fluoro-substituted covalent organic framework as a high-performance cathode material, Chemical Communication, 2019, 55, 13247 - 13250.
16. Two-dimensional graphene oxide/MXene composite lamellar membranes for efficient solvent permeation and molecular separation, Journal of Membrane Science, 2019, 582, 414-422.
17.Sulfur confinement in a covalent organic framework for application in lithium-sulfur battery, ACS Applied Materials & Interfaces, 2018, 10(49): 42233-42240.
18. Graphene oxide/triethanolamine modified titanate nanowires as photocatalytic membrane for water treatment, Chemical Engineering Journal, 2017, 320: 74-80.
19. Graphene oxide for high-efficiency separation membranes: Role of electrostatic interactions, Carbon, 2016, 110: 56-61.
20. A free-standing and ultralong-life lithium-selenium battery cathode enabled by 3D mesoporous carbon/graphene hierarchical architecture, Advanced Functional Materials, 2015, 25(3): 455-463.
授權國家發明專利
1. 一種複合固態電解質及其製備方法和套用,ZL 202111148220.5
2. 一種光熱轉換膜及其製備方法和套用,ZL 202110994225.3
3. 一種鐵基光熱轉換膜及其製備方法和套用,ZL 202310864575.7
4. 一種基於含氮雜環離子液體的聚合物複合隔膜及其鋰硫電池套用,ZL 202210280656.8
5. 鋰硫電池正極材料及其製備方法,ZL201811189810.0
6. 鋰硫電池正極複合材料及其製備方法,ZL201811189828.0
7. 一種鉬酸銨/聚多巴胺複合材料及其製備方法和套用,ZL201910807580.8
8. 一種具有高水相穩定性的自支撐氧化石墨烯薄膜的製備方法,ZL 201710106754.9
9. 一種鋰離子電池納米矽/多孔碳複合負極材料及其製備方法和套用,ZL 201710104531.9
10. 一種矽/PEDOT複合材料及其製備方法和作為鋰離子電池負極材料的套用,ZL 201710435945.X
11. 一種鋰離子電池矽/碳複合負極材料及其原位製備方法和套用,ZL 201610666291.7
12. 一種改性石墨烯負載二氧化鈦複合光催化劑的製備方法,ZL 201510133238.6