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田耘
职称:教授
所在单位:材料科学与工程学院
教师拼音名称:
tianyun
入职时间:
2009-04-08
所在单位:
材料科学与工程学院
性别:
男
在职信息:
在职
是否在职:
1
论文成果
[1] 姜江一鸣. Grain boundary passivation in cuprous oxide thin films via nitrogen annealing. Materials Science in Semiconductor Processing, 2024.
[2] 田耘. Suppressed MoO3/FeMoO4 formation in molybdenum dialkyl-dithiocarbamate-derived tribofilms on nitrogen-incorporated Al-Mg-Ti-B coatings. Tribology International, 2022.
[3] 蒋蕙宇. Lithium dendrite suppression by facile interfacial barium engineering for stable 5 V-class lithium metal batteries with carbonate-based electrolyte. Chemical Engineering Journal, 414, 2021.
[4] 李笑笑. Robust High-Temperature Supercapacitors Based on SiC Nanowires. Advanced functional materials, 2020.
[5] Pengcheng Hu. Reduced bandgap and enhanced p-type electrical conduction in Ag-alloyed Cu2O thin films. JOURNAL OF APPLIED PHYSICS Journal, 128, 2020.
[6] 田耘. Reduced bandgap and enhanced p-type electrical conduction in Ag-alloyed Cu2O thin films. Journal of applied physics, 2020.
[7] 蒋蕙宇. Scalable and controlled synthesis of 2D nanoporous Co3O4 from bulk alloy for potassium ion batteries. Materials Technology, 35, 594, 2020.
[8] 李笑笑. Quasi-aligned SiC@C nanowire arrays as free-standing electrodes for high-performance micro-supercapacitors. Energy Storage Materials, 2020.
[9] 冯金奎 and 田耘. Mental-organic framework derived CuO hollow spheres as high performance anodes for sodium ion battery. Materials Technology, 2016.
[10] 田耘 and 欧阳俊. Comparative studies of the tribological behaviors and tribo-chemical mechanisms for AlMgB14-TiB2 coatings and B4C coatings lubricated with molybdenum dialkyl-dithiocarbamate. Tribology International, 138, 47, 2019.
[11] 欧阳俊 , 田耘 and 张聪聪. Microstructure and mechanical properties of Al-Mg-Ti-B coatings prepared by high power impulse magnetron sputtering (HIPIMS) at room temperature. Surface & Coatings Technology, 322, 25, 2017.
[12] 田耘. Distinct surface hydration behaviors of boron-rich boride thin film coatings. Applied Surface Science, 311, 749, 2014.
[13] 田耘 and 冯金奎. Mental-organic framework derived CuO hollow spheres as high performance anodes for sodium ion battery. Materials Technology, 2016.
[14] 田耘 and 冯金奎. Mental-organic framework derived CuO hollow spheres as high performance anodes for sodium ion battery. Materials Technology:Advanced Performance Materials, 2016.
[15] 田耘 and 白玉俊. One-step fabrication of Fe-Si-O carbon nanotube composite anode material with excellent high-rate long-term cycling stability. JOURNAL OF ALLOYS AND COMPOUNDS , 2016.
共33条 1/3
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