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个人简介

文艳芬,女,副教授、工学博士,厦门理工学院材料科学与工程学院专任教师。获得中南大学学士学位、澳大利亚昆士兰大学博士学位,之后获得博士后国际交流计划引进项目在厦门大学从事博士后工作,出站后加入厦门理工学院材料学院至今。主要从事锂离子/钠离子电池层状正极材料合成、测试和构效关系研究、硬碳材料研究,以及电池电解液添加剂对材料电化学性能和电极/电解液表界面影响的研究。目前已在以一作/通讯在国际顶级学术期刊Advanced Functional Materials(影响因子19.924),Nano Energy(影响因子17.881),Applied Materials & Interfaces(影响因子10.383), Journal of Materials Chemistry A(影响因子14.511),Electrochimica Acta(影响因子7.336),Chemsuschem(影响因子8.928)等发表SCI收录论文十余篇,目前主持省部级项目2项、市厅级项目3项。 近年来承担的主要科研项目: 1.中国博士后科学基金面上资助,钠离子电池锰基氧化物正极材料的设计、合成和机理研究,项目编号189083,研究经费:5.0万元,起止时间:2018.05-2020.12,主持。 2.2021度福建省中青年教师教育科研项目,JAT210338,新型溶剂热法合成镁掺杂的P2型锰基层状氧化物正极材料,2021.11.01-2024.11.01,1万元,主持。 3.2022年福建省自然科学基金面上项目,钠离子电池层状氧化物的相变机理及相变-表界面效应研究,2022.08-2025.08,7万元,主持 4.2022年厦门市留学人员科研项目,钠离子电池Mn-Zn基层状正极材料的储钠机制及其相变机理的研究,2022.10-2025.10,5万元,主持 5.2022年厦门市产学研项目,高性能碳包覆磷酸铁锂的研发,5万元,主持

研究领域

钠离子电池层状正极材料合成、测试和构效关系研究

1.锂离子/钠离子电池正极层状材料 2.功能电解液开发 3.硬碳材料研究和应用

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

1.Y. Wen, Z. Huang, J. Le, P. Dai, C. Shi, G. Li, S. Zhou, J. Fan, S. Zhuang, M. Lu, L. Huang and S.-G. Sun, “Copper Substitution in P2-Type Sodium Layered Oxide To Mitigate Phase Transition and Enhance Cyclability of Sodium-Ion Batteries.” ACS Applied Materials & Interfaces, 2022, 14, 29813-29821.(IF=10.383). 2. Fan, J.; Dai, P.; Shi, C.; Wen, Y.;* (通讯作者);Luo, C.; Yang, J.; Song, C.; Wu, l.; Huang, L.;* Sun, S.* “Synergistic Dual-Additive Electrolyte for Interphase Modification to Boost Cyclability of Layered Cathode for Sodium Ion Batteries.” Advanced Functional Materials, 31,2010500. (IF=16.836). 3. Fan, J.; Dai, P.; Shi, C.; Song, C.; Wu, l.; Wen, Y.;* (通讯作者) Huang, L.;* Sun, S.* “Insights into the Li incorporation effect in Ni/Co free P2-type Na0.6Mn0.8Cu0.2O2 for sodium-ion batteries.” Journal of Materials Chemistry A, 2020,8, 22346-22355. (IF=11.301) 4. Wen, Y; Dai, P.; Le, J.; Huang, Z; Shi, C.; Li, G.; Zhou, S.; Huang, L.;* Sun, S.* “Probing into the working mechanism of Mg versus Co in enhancing the electrochemical performance of P2-Type layered composite for sodium-ion batteries.” Nano Energy, 2019, 60, 162-170. (IF=16.602) 5. Wen, Y; Zhang, H. “Highly Stretchable Polymer Binder Engineered with Polysaccharides for Silicon Microparticles as High‐Performance Anodes.” ChemSusChem, 2020, 13, 3887 –3892. (IF=7.962) 6. Wen, Y.; Yun, J-H; Luo, B.; Lyu, M.; Wang, L. “Tuning the Carbon Content on TiO2 Nanosheets for Optimized Sodium Storage.” Electrochimica Acta, 2016, 219, 163-169. (IF=6.215) 7. Wen, Y; Wang, B.; Delai, Y.; Lyu, M., Wang, L. “Long-term Cycling Performance of Nitrogen Doped Hollow Carbon Nanospheres as Anode Materials for Sodium-Ion Batteries.” European Journal of Inorganic Chemistry, 2016,2016, 2051-2055. (IF=2.529) 8. Wen, Y; Wang, B.; Zeng, G.; Kazuhiro, N.; Delai, Y.; Wang, L. “Electrochemical and Structural Study of Layered P2-Type Na2/3Ni1/3Mn2/3O2 as Cathode Material for Sodium-Ion Batteries.” Chemistry-An Asian Journal, 2015, 10, 661-666. (IF=4.056) 9. Wu, L.; Peng,J.;Sun, Y.; Han, F.; Wen, Y.; C.-G. Shi, Fan, J.; Huang,L.; Li, J. And Sun, S. ACS Appl. Mater. Interfaces, 2019, 11, 18504-18510. (IF=8.758) 10. Zhou, X.; Huang, W.; Shi, C.; Wang, K.; Zhang, R.; Guo, J.; Wen, Y.; Zhang, S.; Wang, Q.; Huang, L.; Li, J.; Zhou X. and Sun, S. “Enabling Lithium-Metal Anode Encapsulated in a 3D Carbon Skeleton with a Superior Rate Performance and Capacity Retention in Full Cells.” ACS Applied Materials & Interfaces, 2018, 10, 35296-35305. (IF=8.758) 11. Wang, B.; Wen, Y.; Ye, D.; Yu, H.; Sun, B.; Wang, G.; Hulicova-Jurcakova, D.; Wang, L. “Dual Protection of Sulfur by Carbon Nanospheres and Graphene Sheets for Lithium–Sulfur Batteries.” Chemistry–A European Journal, 2014, 20, 5224-5230. ((IF=4.857)

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