亚洲菠菜十大平台推荐
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基本信息



     

 

 

 

陈曼芳

 

 

职称:副教授

性别:

 

 

职务:

办公电话:

 

 

移动电话:18773202212

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家庭住址:化学化工大楼C805

电子邮箱:mfchen@xtu.edu.cn

 

 

 

 

 

 

工作学习经历



 

2010.9-2014.6      10大信誉菠菜担保平台 应用化学专业

本科 

2014.9-2019.12    10大信誉菠菜担保平台 应用化学专业  

博士研究生 

2020.1-2022.12    亚洲菠菜十大平台推荐  

讲师

        2022.9-2024.11    亚洲菠菜十大平台推荐

博士后

2022.12 -至今  亚洲菠菜十大平台推荐

副教授

 

 

主讲课程



物理化学》、《物理化学实验

 

 

研究方向 



新型储能电池及先进储能材料

 

 

主要学术成果 



 

、主持的科研项目:

[1] 国家自然科学基金青年项目22109135,主持,2022-2024.

[2] 湖南省自然科学基金面上项目XXXXX,主持,2025-2027.

[3] 湖南省自然科学基金青年项目2022JJ40423,主持,2022-2024.

[4] 中国博士后科学基金特别资助(站前)(2022TQ0265),主持,2022-2024.

[5] 湖南省教育厅科学研究项目-优秀青年(23B0126,主持,2023-2025.

[6] 湖南省学位与研究生教学改革研究项目(2024JGYB123,主持,2023-2027.

[7] 湖南省普通高等学校教学改革研究项目(HNJG-20230309,主持,2024-2027.

[8] 10大信誉菠菜担保平台人才引进科研启动项目,主持,2020.

、期刊论文

1.  2024

[1] He Y, Xiong D, Luo Y, Chen M F*, Shu H B*, et al. Phase Reconstruction‐Assisted Electron‐Li+ Reservoirs Enable High‐Performance Li‐S Battery Operation Across Wide Temperature Range[J]. Advanced Functional Materials, 2025, 35(1): 2410899.(中科院一区,IF=18.5

[2] Xia W, Chen Y, Han M, Chen M F*, Shu H B*, et al. MoC‐MoSe2 Heterostructures as Multifunctional Catalyst Toward Promoting the Stepwise Polysulfide Conversion for Lithium‐Sulfur Batteries[J]. Advanced Functional Materials, 2024: 2400262.(中科院一区,IF=18.5

[3] Luo Y, Liu S, Chen M, Chen M F*, Shu H B*,  et al. Bimetallic synergistic catalysis strategy with one-dimensional CuCo-NC for enhanced Wide-temperature stability in high-energy lithium-sulfur batteries[J]. Chemical Engineering Journal, 2025, 505: 159158.(中科院一区,IF=13.4

[4] Zhang W, Chen M, Luo Y, Chen M F*, Wang X Y*, et al. Utilizing 2D layered structure Cu-g-C3N4 electrocatalyst for optimizing polysulfide conversion in wide-temperature Li-S batteries[J]. Chemical Engineering Journal, 2024, 486: 150411.(中科院一区,IF=13.4

[5] Xia W, Liu H, Chen Y, Chen M F*, Shu H B*, et al. Linking D‐Band Center Modulation with Rapid Reversible Sulfur Conversion Kinetics via Structural Engineering of VS₂[J]. Small, 2408304.JCR一区IF=13.0

[6] Liu S, Chen M, Luo Y, Chen M F*, Shu H B*, et al. Synergistic electrochemical catalysis by high-entropy metal phosphide in lithium–sulfur batteries[J]. Journal of Colloid and Interface Science, 2024, 669: 126-136.(中科院一区,IF=9.4

[7] Zhu K, Chen M, Luo Y, Chen M F*, et al. N-doped carbon interwoven with carbon nanotubes as an accelerating polysulfide conversion interlayer for High-Performance lithium-sulfur batteries[J]. Materials Letters, 2024, 366: 136566.JCR二区IF=2.7本科生一作

22023

[8] Zhang D, Duan T F, Shu H B*, Pei Y*, Wang X Y*, Chen M F*, et al. Oxygen Defect‐Rich WO3− x–W3N4 Mott–Schottky Heterojunctions Enabling Bidirectional Catalysis for Sulfur Cathode[J]. Advanced Functional Materials, 2023: 2306578. (中科院一区,IF=18.5

[9] Zhou X, Huang X L, Chen M F*, Wang X Y*, et al. An advanced SRR catalyst based on hollow polyhedral carbon skeleton modified by Tri-metal (Zn, Co, Fe) for Li-S batteries[J]. Chemical Engineering Journal, 2023, 471: 144806.(中科院一区,IF=13.4

[10] Luo Y X, Zhang D, Shu H B*, Wang X Y*,Chen M F*, et al. Intergrated morphology engineering and alloying strategy for FeNi@ NC Catalysts: Tackling the polysulfide shuttle in Li-S batteries[J]. Chemical Engineering Journal, 2023, 474: 145751.(中科院一区,IF=13.4

[11] Luo Y X, Wu M, Chen M F*, Wang X Y*, et al. Boosted Polysulfide Conversion by Co, Mn Bimetallic-Modulated Nitrogen–Carbon Material for Advanced Lithium–Sulfur Batteries[J]. ACS Sustainable Chemistry & Engineering, 2023, 11(3): 1087-1099.(中科院一区,IF=7.1

[12] He Y Q, Luo Y X, Wang X Y*, Chen M F*, et al. MoO2/t-C3N4 Heterogeneous Materials with Bidirectional Catalysis for the Rapid Conversion of S Species in Li–S Batteries[J]. ACS Applied Materials & Interfaces, 2023, 15 (39), 45915-45925.JCR一区,IF=8.3

[13] Dong Y, Zhang D, Shu H B*, Wang X Y*, Chen M F*, et al. Inhibiting polysulfide shuttling with a flexible “skin” for highly stable Lithium-Sulfur batteries[J]. Materials Letters, 2023, 343: 134378.JCR二区IF=2.7本科生一作

[14] Luo Y X, Wu B,Chen M F*, Wang X Y*, et al. Two-dimensional VSe2/CNT functional materials boosted polysulfide conversion for high stability lithium-sulfur battery[J]. Materials Letters, 2023, 346: 134511.JCR二区IF=2.7

22022

[15] Liu M, Chen M F*, Wang X Y*, et al, rGO-Encapsulated Co/Ni Dual-Doped FeF3· 0.33 H2O Nanoparticles Enabling a High-Rate and Long-Life Iron (III) Fluoride-Lithium Battery[J]. Chemical Engineering Journal, 2022: 138774.(中科院一区,IF=13.4

[16] Zhang D, Chen M F*, Wang X Y*, et al, ZnFe2O4-Ni5P4 Mott-Schottky Heterojunctions to Promote Kinetics for Advanced Li-S Batteries[J]. ACS Applied Materials & Interfaces, 2022, 14, 20, 23546–23557.JCR一区,IF=8.3

[17] Zhou X, Chen M F*, Wang X Y*, et al, Engineering a TiNb2O7-Based Electrocatalyst on a Flexible Self-Supporting Sulfur Cathode for Promoting Li-S Battery Performance[J]. ACS Applied Materials & Interfaces, 2022, 14, 1, 1157–1168.JCR一区,IF=8.3

[18] Zeng P, Chen M F*, Wang X Y*, et al, In-situ synthesis of highly graphitized and Fe/N enriched carbon tubes as catalytic mediums for promoting multi-step conversion of lithium polysulfides, Carbon, 2022, 192, 418-428.JCR一区,IF=10.9

[19] Zhou X, Chen M F*, Wang X Y*, et al,  Improving the Electrochemical Performance of Li-S Batteries via a MnCo2S4-CoS1. 097 Heterostructure with a Hollow Structure and High Catalytic Activity[J]. ACS Applied Energy Materials, 2022, 5(10): 13011-13022.JCR区,IF=5.4

[20] Yu H, Chen M F*, Wang X Y*, et al, 3D cellulose graphene aerogel with self-redox CeO2 as Li2S host for high-performance Li-S battery[J].Energy Technology, 2022.JCR区,IF=3.6

3.   2021

[21] Liu M, Chen M F*, Wang X Y*, et al, Unveiling the Role and Mechanism of Nb Doping and In Situ Carbon Coating on Improving Lithium-Ion Storage Characteristics of Rod-Like Morphology FeF3·0.33 H2O[J]. Small, 2021: 2105193. JCR一区IF=13.0

[22] Yu H, Chen M F*, Wang X Y*, et al. Atomically Dispersed and O, N-Coordinated Mn-Based Catalyst for Promoting the Conversion of Polysulfides in Li2S-Based Li–S Battery[J]. ACS Applied Materials & Interfaces, 2021, 13, 54113-54123.JCR一区,IF=8.3 

[23]  Zhang D, Chen M F*, Wang X Y*, et al, A heterogeneous FeP-CoP electrocatalyst for expediting sulfur redox in high-specific-energy lithium-sulfur batteries[J]. Electrochimica Acta, 2021, 397: 139275. JCR一区,IF=5.5 

[24] Liu H, Chen M F*, Wang X Y*, et al, Enhancing the electrochemical performances of Li2S-based cathode through conductive interface design and addition of mixed conductive materials[J]. Electrochimica Acta, 2021, 396: 139238.JCR一区,IF=5.5 

[25] Zhang D, Li Z H, Chen M F*, et al, Hollow urchin-like Al-doped α-MnO2−X as advanced sulfur host for high-performance lithium-sulfur batteries[J]. Materials Letters, 2021, 285: 129135. JCR二区IF=2.7

[26]  Zhang D, Huang W H, Chen M F*, et al, Core-Shell Structure S@PPy/CB with High Electroconductibility to Effective Confinement Polysulfide Shuttle Effect for Advanced Lithium-Sulfur Batteries[J]. Energy & Fuels, 2021, 35(12): 10181-10189. JCR二区IF=5.2

42020年以前

[27] Chen M F, Xu W T, Wang X Y*, et al, Multifunctional Heterostructures for Polysulfide Suppression in High-Performance Lithium-Sulfur Cathode, Small, 2018, 14(49): 1803134. JCR一区IF=13.0

[28] Chen M F, Huang C, Wang X Y*, et al, Perovskite-type La0.56Li0.33TiO3 as an effective polysulfide promoter for stable lithium-sulfur batteries in lean electrolyte condition, Journal of Materials Chemistry A, 2019,7, 10293-10302. JCR一区,IF=10.2热点论文

[29] Chen M F, Wang X Y*, Cai S Y, et al, Enhancing the Performance of Lithium-Sulfur Batteries by Anchoring Polar Polymers on the Surface of Sulfur Host Materials, Journal of Materials Chemistry A, 2016, 4(41): 16148-16156.JCR一区,IF=10.2

[30] Chen M F, Jiang S X, Wang X Y*, et al, The synergetic effects of multifunctional composite with more efficient polysulfide immobilization and ultrahigh sulfur content in lithium-sulfur batteries, ACS Applied Materials & Interfaces, 2018, 10(16): 13562-13572. JCR一区,IF=8.3

[31] Chen M F, Lu Q, Wang X Y*, et al, MnO2 nanosheets grown on the internal/external surface of N-doped hollow porous carbon nanospheres as the sulfur host of advanced lithium-sulfur batteries, Chemical Engineering Journal, 2018, 335: 831-842. (中科院一区,IF=13.4高被引论文

[32] Chen M F, Jiang S X, Wang X Y*, et al, Hierarchical porous carbon modified with ionic surfactants as efficient sulfur hosts for the high-performance lithium-sulfur batteries, Chemical Engineering Journal, 2017, 313: 404-414.(中科院一区,IF=13.4高被引论文

[33] Chen M F, Zhao X M, Wang X Y*, et al, Kinetically Elevated Redox Conversion of Polysulfides of Lithium-Sulfur Battery using a Separator Modified with Transition Metals Coordinated g‑C3N4 with Carbon-Conjugated[J]. Chemical Engineering Journal, 2020, 385: 123905. 中科院一区,IF=13.4

[34] Chen M F, Jiang S X, Wang X Y*, et al, Suppressing polysulfide shuttle effect by heteroatom-doping for high-performance lithium-sulfur batteries, ACS Sustainable Chemistry & Engineering, 2018, 6(6): 7545-7557.(中科院一区,IF=7.1

[35] Chen M F, Jiang S X, Wang X Y*, et al, Honeycomb-like nitrogen and sulfur dual-doped hierarchical porous biomass-derived carbon for lithium-sulfur batteries, ChemSusChem, 2017, 10(8): 1803-1812. JCR一区,IF=7.5

[36] Chen M F, Wang X Y*, Shu H B, et al. Solvothermal synthesis of monodisperse micro-nanostructure starfish-like porous LiFePO4 as cathode material for lithium-ion batteries[J]. Journal of Alloys and Compounds, 2015, 652: 213-219.JCR一区,IF=5.8

申请国家发明专利

[1] 陈曼芳刘思思舒洪波刘泓杨秀康王先友一种高熵MXene-硫复合材料及其制备方法和应用、锂硫电池中国, CN202410387740.9

[2] 陈曼芳何永乾舒洪波王先友;一种氨化钼量子点二维层状碳化氨复合材料及其制备和在锂硫电池隔膜改性中的应用,中国, CN202411232027.3

[3] 杨秀康刘淇文曹安民孙勇刚陈曼芳舒洪波王先友一种实现电极材料表面改性的可控方法. 2022.06.07,中国, CN202110534278.7

[4] 舒洪波夏文龙梁倩倩陈燕杨秀康陈曼芳王先友一种锂硫电池正极材料及其制备方法、锂硫电池. 2022.06.17, 中国, CN202210683430.2

[5] 王先友陈曼芳蒋守鑫黄成舒洪波一种辣椒生物碳/硫复合材料及其制备方法和应用. 2019.01.25,中国, 201811074345.6

[6]王先友,陈曼芳,舒洪波等一种具有多孔星形形貌的锂离子电池正极材料LiFePO4及其制备方法,专利号:ZL201510069405.5

[7]王先友刘磊刘敏李晓龙余睿智陈曼芳阳立邵鼎盛罗凯丽一种基于锡基氟化物MSnF4层状氟离子电解质的室温固态氟离子电池的制备. 2022.06.24, 中国, CN201910153815.6

、所获奖励及荣誉

湖南省优秀博士毕业论文、宝钢优秀学生奖、湖南省普通高校百佳大学生党员、博士研究生国家奖学金(2次)、2020-2021学年优秀班主任2021年教师课堂教学竞赛三等奖、第二十四届研究生校长奖特等奖学金、伟人之托奖学金、芙蓉学子学术创新奖等荣誉和奖励。

五、学生培养

张丹 (2020年硕士毕业于10大信誉菠菜担保平台,曾获得10大信誉菠菜担保平台2021-2022年度研究生国家奖学金、10大信誉菠菜担保平台2021-2022年度三好研究生10大信誉菠菜担保平台2023省级优秀毕业生10大信誉菠菜担保平台2023校级优秀毕业生10大信誉菠菜担保平台2023校长奖优秀奖等荣誉)

罗益馨 (获得第六届全国锂硫电池暨碳基能源研讨会优秀墙报奖10大信誉菠菜担保平台2022-2023年度研究生国家奖学金10大信誉菠菜担保平台2022-2023年度十佳研究生标兵等荣誉)

何永乾 (获得10大信誉菠菜担保平台2023-2024年度研究生国家奖学金和10大信誉菠菜担保平台2022-2023年度三好研究生等荣誉)

刘思思 (获得10大信誉菠菜担保平台2024年度亚洲菠菜十大平台推荐展辰新材奖学金二等奖和10大信誉菠菜担保平台2024年度伟人之托奖学金等荣誉

六、指导大学生创新创业训练计划项目  

[1] 向聪, 湖南省大学生创新创业训练计划项目《非均相双金属磷化物的设计、制备及其在锂硫电池中的应用》院级,结题2021.6-2023.6.

[2] 董宇, 10大信誉菠菜担保平台大学生创新创业训练计划项目《基于Mott-Schottky异质结的锂硫电池正极体系及界面特性研究》,省级结项2022.6-2024.6.

[3] 黄莉, 10大信誉菠菜担保平台大学生创新创业训练计划项目《2D-VSe2/g-C3N4功能材料催化锂硫电池机理研究》,校级,结项2022.6-2024.6.

[4] 朱凯, 10大信誉菠菜担保平台大学生创新创业训练计划项目《莫特-肖特基异质结量子点调控锂硫电池动力学研究》,省级,在研2023.6-2025.6.

[5] 李鑫, 10大信誉菠菜担保平台大学生创新创业训练计划项目《管状氮化碳/二氧化钼异质结材料的制备及其在锂硫电池中的应用》,院级,在研2023.6-2025.6.

[6] 罗焱,10大信誉菠菜担保平台大学生创新创业训练计划项目《FeCo@NC的功能化设计及其在锂硫电池中逐步电催化机制研究》,省级,在研,2024.6-2026.6

七、指导本科生获奖项目

        第十七届全国大学生节能减排社会实践科技竞赛,荣获优秀创意奖。

个人简介 



陈曼芳,女,博士,硕士生导师。目前主持了国家自然科学青年基金项目、中国博士后科学基金特别资助(站前)、湖南省自然科学面上基金项目等省部级以上项目7项,以第一作者和通讯作者在国际重要期刊Advanced Functional MaterialsSmallJournal of Materials Chemistry ACarbonChemical Engineering Journal等上发表科研论文36篇,共发表科研论文90篇,研究工作得到了国内外同行的高度认可,被多家专业杂志进行亮点评述报道,H-index 34,论文被引2500余次,其中有一篇被评选为2019年热点论文,篇被评为高被引论文,申请发明专利项。获湖南省优秀博士毕业论文、宝钢优秀学生奖、湖南省普通高校百佳大学生党员、博士研究生国家奖学金(2次)、2020-2021学年优秀班主任、2021年教师课堂教学竞赛三等奖、第二十四届研究生校长奖特等奖学金、伟人之托奖学金、芙蓉学子学术创新奖等荣誉和奖励。参与多个国家级科研项目的研发,与企业开展广泛的产学研合作。每年可招收1-3名硕士研究生欢迎有兴趣的本科生进实验室学习。

学术主页:https://www.researchgate.net/profile/Manfang-Chen

https://webofscience.clarivate.cn/wos/author/record/28375615

https://www.x-mol.com/groups/chen_manfang

 

 

  
 

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