韓凱(中南大學教授,博士生導師,湖南省傑青)

韓凱(中南大學教授,博士生導師,湖南省傑青)

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韓凱,教授,博士生導師,湖南省傑青,湖南省青年骨幹教師,美國Northwestern University國家公派聯培博士,粉末冶金全國重點實驗室固定人員,湖南省先進儲能和移動電源工程技術研究中心副主任,首批湖南省“智匯瀟湘”博士智囊團成員,獲湖南省第十六屆青年化學化工獎、第九屆石油化工優秀工程師獎,擔任《Advanced Powder Materials》、《Rare Metals》、《稀有金屬》、《有色金屬科學與工程》等學術期刊青年編委,錳資源高效清潔利用湖南省重點實驗室與化學電源湖南省重點實驗室核心骨幹。

先後主持國家重點研發計畫項目子課題、國家自然科學基金、湖南省自然科學基金、中國博士後科學基金特別資助以及校企產學研項目等10餘項。以第一或通訊作者在Advanced Functional Materials、Advanced Energy Materials、Industrial & Engineering Chemistry Research、Journal of Membrane Science等國內外權威期刊發表論文70餘篇(ESI Top 1%高被引論文6篇),獲國產卓越期刊Journal of Energy Chemistry Best Paper Award,授權國家發明專利12項,長期擔任ACS Nano、Energy & Environmental Science、Journal of Materials Chemistry A等期刊審稿人。

主要研究領域,具體研究方向,主持科研項目,部分學術論文,授權國家發明專利,

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

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