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个人信息Personal Information
教授
硕士生导师
主要任职:大连理工大学莱斯特国际学院副院长
性别:男
毕业院校:日本东北大学
学位:博士
所在单位:大连理工大学莱斯特国际学院
电子邮箱:
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- [21]宋学志.孙菲菲,谭振权.金属有机框架及其衍生氧化物纳米材料在环境监测方面的探索[A],中国化学会第八届全国配位化学会议,2022
- [22]刘子昂.陶玉溪,谭振权.高电容量CNTs/AC/NG复合材料的合成与电化学研究[A],中国化学会第30届学术年会,2022:1-1
- [23]代子登.徐新宇,郭兆明,郑坤,宋学志,戚秀玉,谭振权.Effect of ROS generation on highly dispersed 4-layer O-Ti7O13 nanosheets toward tumor synergistic therapy[J],MATERIALS SCIENCE ENGINEERING C BIOMIMETIC AND SUPRAMOLECULAR SYSTEMS,2022
- [24]宋学志.Wang, Yu-Xiang,Yan, Jia-Wei,陈茜,孟玉兰,谭振权.Enhancing the Fe3+ Sensing Sensitivity by Energy Transfer and Phase Transformation in a Bimetallic Lanthanide Metal-Organic Framework[J],ChemistrySelect,2022,3(33):9564-9570
- [25]Ohara, Satoshi.Umetsu, Mitsuo,Adschiri, Tadafumi,谭振权,Valmalette, Jean-Christophe.Fabrication of Metal-DNA and Metal-CNT Hybrid Nanomaterials[A],Opto Electronics Communications Conference (OECC),2022
- [26]宋学志.Su, Qiao-Feng,李少杰,Liu, Gui-Chao,Zhang, Nan,Zhu, Wen-Yu,王子豪,谭振权.Heterostructural Co/CeO2/Co2P/CoP@NC dodecahedrons derived from CeO2-inserted zeolitic imidazolate framework-67 as efficient bifunctional electrocatalysts for overall water splitting[J],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2022,45(55):30559-30570
- [27]刘贵超.宋学志,张申鹏,陈茜,刘思航,孟玉兰,谭振权.Hierarchical CuO@ZnCo-OH core-shell heterostructure on copper foam as three-dimensional binder-free electrodes for asymmetric supercapacitors[J],JOURNAL OF POWER SOURCES,2022,465:228239-
- [28]Liu, Guichao.宋学志,Zhang, Shenpeng,陈茜,Liu, Sihang,孟玉兰,谭振权.Hierarchical CuO@ZnCo-OH core-shell heterostructure on copper foam as three-dimensional binder-free electrodes for high performance asymmetric supercapacitors[J],JOURNAL OF POWER SOURCES,2022,465
- [29]康晓兰.宋学志,刘思航,裴明珠,文雯,谭振权.In situ formation of defect-engineered N-doped TiO2 porous mesocrystal for enhanced photo-degradation and PEC performance[J],Nanoscale Advances,2022
- [30]Kang, Xiaolan.宋学志,Liu, Sihang,Pei, Mingzhu,Wen, Wen,谭振权.In situ formation of defect-engineered N-doped TiO2 porous mesocrystals for enhanced photodegradation and PEC performance[J],NANOSCALE ADVANCES,2022,1(4):1372-1379
