姓名:侯景枫 职称:讲师

学科:农业工程
电话/传真: 所在办公室:305
电子邮件:
通讯地址:山西省太谷区山西农业大学农业工程学院
邮政编码:030801
一、教育背景
2014.09-2018.06 中北大学 无机非金属材料工程 本科
2018.09-2021.06 兰州理工大学 材料物理与化学 硕士
2021.09-2024.06 兰州理工大学 材料物理与化学 博士
二、工作经历
2024.09-至今 山西农业大学 讲师
三、承担课程
四、研究方向
五、科研项目
六、学术成果(论文、专著、专利等)
[1]Jing-Feng Hou, Jian-Fei Gao, Ling-bin Kong*. Disorder/order-heterophase VO2for enhanced lithium storage performance in lithium-ion capacitors. Journal of Energy Storage, 2024, 81: 110433.
[2]Jing-Feng Hou, Jian-Fei Gao, Ling-bin Kong*. Niobium boride (NbB2): salt-templated synthesis, pseudocapacitive electrode and lithium-ion capacitor applications. Journal of Alloys and Compounds, 2024, 978: 173484.
[3]Jing-Feng Hou, Jian-Fei Gao, Ling-bin Kong*. Molten salts synthesis of NbB nanoparticles for lithium-ion capacitor applications. Journal of Electroanalytical Chemistry, 2024, 962:118274.
[4]Jing-Feng Hou, Jian-Fei Gao, Ling-bin Kong*. Enhanced rate and specific capacity in nanorod-like core-shell crystalline NiMoO4@amorphous cobalt boride materials enabled by mott-schottky heterostructure as positive electrode for hybrid supercapacitor. Journal of Energy Chemistry, 2023, 85: 276-287.
[5]Jing-Feng Hou, Jian-Fei Gao, Ling-bin Kong*. A crystalline nickel vanadium oxide@amorphous cobalt boride nanocomposites with enhanced specific capacity for hybrid supercapacitors. Electrochimica Acta, 2021, 377: 138086.
[6]Jing-Feng Hou, Jian-Fei Gao, Ling-bin Kong*. Crystalline Co2V3O8@amorphous Co-B core-shell nano‐microsphere: tunable shell layer thickness, faradaic pseudocapacitive mechanism, and electrochemical capacitor applications. Batteries & Supercaps, 2021, 4: 948-959.
[7]Jing-Feng Hou, Jian-Fei Gao, Ling-bin Kong*. Enhancing kinetic process in biphasic crystalline NiWO4/amorphous Co-B electrode materials toward ultrahigh rate performance energy storage. Chemistry-An Asian Journal, 2021, 16(24): 4130-4136.
[8]Jing-Feng Hou, Jian-Fei Gao, Ling-bin Kong*. Interfacial engineering in crystalline cobalt tungstate/amorphous cobalt boride heterogeneous nanostructures for enhanced electrochemical performances. ACS Applied Energy Materials, 2020, 3(11):11470–11479.
[9]Jing-Feng Hou, Jian-Fei Gao, Ling-bin Kong*. Boosting the performance of cobalt molybdate nanorods by introducing nanoflake-like cobalt boride to form a heterostructure for aqueous hybrid supercapacitors. Journal of Colloid and Interface Science, 2020, 565: 388-399.
[10]Jing-feng Hou, Jian-Fei Gao, Ling-bin Kong*. Liquid phase reduction synthesis of a cobalt boride-activated carbon composite with improved specific capacitance and retention rate as a new positive electrode material for supercapacitors. New Journal of Chemistry, 2019, 43(36): 14475-14484.
七、荣誉奖励
八、学术兼职
九、成果展示(图文形式)