教师名录
1. 个人简介
吴会杰,硕士研究生,讲师,主要致力于半导体超级电容器电化学储能材料与器件,半导体光催化材料领域的研究。近年来,主持重庆市自然科学基金面上项目1项,重庆市教委项目2项,永川区科委项目1项。在国际期刊Physica E,Applied Physica A,Journal of Nanoparticle Research 和 Materials Science and Engineering B等发表论文10余篇,申请和授权发明专利近10件。
2. 个人经历
2007.09—2010.06 西南大学 硕士研究生
2011.03—至今 重庆文理学院 教师
3. 研究方向
半导体超级电容器电化学储能材料与器件,半导体光催化材料
4. 代表性科研成果
项目
(1)重庆市自然科学基金面上项目,cstc2019jcyj-msxmX0670,α-Fe2O3纳米棒/石墨烯三维复合电极材料的原位构筑与电化学储能研究,2019-07-01至2022-06-30,20万元,主持。
(2)重庆市教委项目,KJQN202001341,Co3O4纳米线/石墨烯三维复合电极材料的原位构筑及其超级电容器性能研究,2020.10至2023.10,4万元,主持。
(3)重庆市教委项目,KJ1711292,基于超级电容器用的纳米二硫化钼的形貌可控合成及性能研究,2017.01至2018.12,4万元,主持。
(4)永川区科委项目,Ycstc, 2019nb0602,一维α-Fe2O3纳米材料的形貌可控合成及其超级电容器电化学储能研究,2019.09至2022.08,2万元,主持。
代表性论文、专利
[1] Huijie Wu, Yuan Li. High yield design of mesoporous tetrakaidecahedron‑like α-Fe2O3 nanocrystals with enhanced supercapacitive performance. Ionics (2023) 29: 3237-3248.
[2] Huijie Wu, Yuan Li, Wei Xiao, Liangliang Tian, Jing Song. Preparation and electrochemical propertiesof mesoporous α-Fe2O3 nanowires for supercapacitorapplication. J Mater Sci: Mater Electron (2023) 34:1098.
[3] Huijie Wu, Yuan Li, Bo Song, Qing Li. Facile synthesis of porous waist drum-like α-Fe2O3nanocrystals as electrode materials for supercapacitorapplication. J Mater Sci: Mater Electron 32 (2021):18777-18789.
[4] Tingting Liu, Yuan Li, Jiaxuan Yin, Jiangming Li, Huijie Wu*, Hydrothermal synthesis of uniform urchin-like γ-MnS architectures and their photocatalytic properties. Physica E: Low-dimensional Systems and Nanostructures 116 (2020): 113711.
[5] Huijie Wu, Yuan Li, Template-free synthesis of uniform rose-like MoS2 hierarchitectures and their enhanced photocatalytic properties. Journal of Materials Science: Materials in Electronics 29 (2018): 19393-19401.
[6] Huijie Wu, Yuan Li, Qing Li, Facile synthesis of CuS nanostructured lowers and their visible light photocatalytic properties. Applied Physics A: Materials Science & Processing 123 (2017): 196.
[7] Diben Wu, Wenxi Zhao, Huijie Wu, Zhuan Chen, Hongliang Li, Lian Ying Zhang*. Holey graphene confined hollow nickel oxide nanocrystals for lithium ion storage. Scripta Materialia 178 (2020) 187-192.
[8] Diben Wu, Chao Wang, Huijie Wu, Shuo Wang, Fengqian Wang, Zhuan Chen, Tianbao Zhao, Zongyang Zhang, Lian Ying Zhang*, Chang Ming Li. Synthesis of hollow Co3O4 nanocrystals in situ anchored on holey graphene for high rate lithium-ion batteries. Carbon 163 (2020): 137-144.
[9] 吴会杰, 李庆, 张进, 唐英. 钴纳米球的制备方法. 专利号:ZL201310415898.4, 2015.02授权,2021年完成转化。
[10] 吴会杰. 一种草酸钴纳米线的制备方法.专利号:ZL201710337689.0, 2020.03授权,2024年完成转化。
[11] 吴会杰, 冉倩妮, 张进, 张铁军. 一种粒径可控银纳米粒子的制备方法. 专利号:ZL201410508324.6, 2017.01.授权。
[12] 吴会杰. 一种海胆状碱式碳酸钴的制备方法. 专利号:ZL202110115535.3, 2022.10.授权。