个人简介
田成祥,硕士生导师。2021年01月- 2022年01月,新加坡国立大学联合培养博士,2021年12月毕业于电子科技大学物理学专业。长期从事二维半导体材料制备与储能性能的研究工作,主要包括光电特性分析和锂电池/钠电池的应用研究。近年来在Advanced Materials、ACS Nano、Small、ACS Applied Materials & Interfaces、Energy Reports、Applied Surface Science等国内外期刊上发表SCI论文20余篇,其中,指导本科生完成TOP期刊论文1篇。 欢迎邮件咨询,请附简历、本科成绩单等。 希望拟报考的同学做事认真、勤奋肯干,共同进步!
纵向科研
浙江省自然科学基金青年项目,二维钼基硫属异质结的电子结构调控与界面特性研究, 10万元
论文
Chengxiang Tian, Yao Luo, et al. Magnetron-sputtered vertically aligned 1 T-rich MoS2 on 3D carbon foam for Li-S batteries[J]. Chemical Engineering Journal, 2026, 547, 181364. Yuxuan Lin, Chengxiang Tian, et al. A novel pre-sodiation strategy for MoS2 anodes: enhancing cycle stability in sodium-ion batteries [J]. Journal of Materials Science: Materials in Electronics, 2025, 36(31), 2028. Chengxiang Tian; Pengcheng Li, Xin Hu, et al. Two‐Step Catalytic Against Polysulfide Shuttling to Enhance Redox Conversion for Advanced Lithium–Sulfur Batteries[J].Small, 2024, 20 (12), 2306928. Haobin Yang, Chengxiang Tian, Jiashuo Wang et al. Simple Synthesis of MoSSe Heterojunction Nanosphere for Ultrafast Kinetics and High-Performance Sodium-Ion Battery[J], Journal of Alloys and Compounds, 2024 1007, 176397. Chengxiang Tian, Songya Cui, Nan Meng, et al. Three-Dimensional Flower Spheres MoSe2/NiSe Heterostructure with Fast Kinetic and Stable Structure for Durable Sodium-Ion Storage[J], Applied Surface Science, 2023, 616: 156511. Weiqi Yao, Chengxiang Tian, Jie Xu, et al. P-Doped NiTe2 with Te-Vacancies in Lithium–Sulfur Batteries Prevents Shuttling and Promotes Polysulfide Conversion[J], Advanced Materials, 2022, 34(11): 2106370. Yu Zheng, Chengxiang Tian, Yitian Wu, et al. Dual-engineering of ammonium vanadate for enhanced aqueous and quasi-solid-state zinc ion batteries[J],Energy Storage Materials 52 (2022) 664–674. Chengxiang Tian; Bo Li, Xia Xiang, et al. Melamine Foam Derived 2H/1T MoS2 as Flexible Interlayer with Efficient Polysulfides Trapping and Fast Li+ Diffusion to Stabilize Li-S Batteries[J]. ACS Applied Materials & Interfaces, 2021, 13, 6229-6240. Chengxiang Tian, Juwei Wu, Zheng Ma, et al. A Melt-Diffusion Strategy for Tunable Sulfur Loading on CC@MoS2 for Lithium–Sulfur Batteries[J]. Energy Reports, 2020, 6, 172-180.
科研成果
浙江省自然科学基金青年项目,二维钼基硫属异质结的电子结构调控与界面特性研究, 10万元
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