基本信息:
姓名:宫溢超
职称:副教授/硕导
Email:gongyichao@xaut.edu.cn
学习和工作经历:
2007/09~2011/06,西安石油大学,学士学位
2011/09~2017/06,四川大学,硕士/博士学位
2015/08~2016/08,新加坡南洋理工大学,联合培养博士
2018/06~2021/06,西安理工大学材料科学与工程博士后流动站
2024/06~至 今,航空工业陕西宏远锻造有限公司博士后工作站
研究方向:
l锂基陶瓷结构设计与服役行为
l核材料制备及其辐照效应
l固体氧化物燃料电池(SOFC)
科研项目:
l国家自然科学基金青年基金,51802257,主持
l中国博士后基金面上项目,2019M663788,主持
l陕西省自然科学基金, 2023-JC-QN-0591, 主持
l陕西省科协青年人才托举计划, 20210419, 主持
l陕西省教育厅科学研究计划专项项目,18JK0570,主持
l西安理工大学青年科技新星
l平面显示用钼合金多元膜磁控溅射制备, 横向
近年来主要科研成果:
lGong Y, LiZ,Li J, et al.A novel preparation of porous Li2TiO3 pebbles with a distinctive structure. Journal of Nuclear Materials,2024.
lGong Y, Li J, Liu L, et al. In-situ generation of Li2TiO3/Li2SiO3 particles in Li4SiO4 using TiO2 addition for grain refinement and improved thermal cycling stability. Ceramics International,2024.
lGong Y, Na Q, Dang C, et al. Enhancing the density and crush load of Li2TiO3 tritium breeding ceramic pebbles by adding LiNO3-Li2CO3. Annals of Nuclear Energy, 2024,196, 110251.
lWang Y,Gong Y(通讯), Kang, K, et al. Fabrication of fine‐grained Li2TiO3 ceramic with enhanced performance using high‐energy ball milling. International Journal of Applied Ceramic Technology, 2023,1-12.
lChen X,Gong Y C(通讯), Kang K, et al. Enhancing properties of Li2TiO3/Li4SiO4tritium breeding ceramics by chitosan addition. Nuclear Materials and Energy, 2023, 37: 101515.
lGong Y C, Chen X, Kang K, et al. Low-temperature sintering of Li4SiO4 spheres with high crushing load using mesoporous silica as Si sources. Processing and Application of Ceramics, 2023, 17 (1): 55-60.
lGong Y C, Wang Y F, Li J J, et al. Alkaline hydrothermal treatment of P25 titanium dioxide for low temperature sintering of Li2TiO3 tritium breeding ceramics. Nuclear Materials and Energy, 2022, 33: 101271.
lGong Y C, Liu L, Qi J Q, et al. A comprehensive study on Li4Si1–xTixO4 ceramics for advanced tritium breeders. Journal of Advanced Ceramics, 2020, 9(5): 629-640.
lGong Y C, Guo B D, Wang X, et al. Preparation of fine-grained MoAlB with preferable mechanical properties and oxidation resistance. International Journal of Refractory Metals & Hard Materials, 2020, 93: 105345.
lGong Y C, Li J J, Liu L, et al. Preparation of Li4SiO4 pebbles with increased lithium content and crush load via molten salt assisted sintering. Ceramics International 46 (2020) 23282-23288.
lGong Y C, Li J J, Yang S H, et al. Improvement of crushing strength and thermal conductivity by introduction of hetero-element Al into Li4SiO4. Ceramics International, 2019, 45: 24564-24569.
lGong Y C, Yu X H, Yang M, et al. A facile approach combining the gel-casting with emulsion method for the preparation of high density erbia microspheres. Annals of Nuclear Energy, 2019, 133: 718–722.
lGong Y C,Feng Y J, Yang M, et al. Preparation of fine-grained Li4SiO4 pebbles by a combined sol–gel and hydrothermal method and their thermal cycling behavior. Journal of Nuclear Materials, 2019, 516: 118–124.
l一种氚增殖用纳米结构正硅酸锂陶瓷小球及其制备方法.ZL201611170337.2
l一种基于熔盐法的高锂含量氚增殖陶瓷小球制备方法.ZL202010031692.1
l柔性、高清显示用大宽幅,高品质钼溅射靶材成套制备工艺技术及应用. 中国有色金属工业科学技术奖二等奖(排名9-11)
荣誉与获奖:
l陕西省高校科协青年人才托举计划
l西安理工大学青年科技新星
l西安理工大学优秀青年教师(第七批)
l中国钼业第一届青年编委
l西安理工大学教书育人先进个人
l西安理工大学优秀教师
l西安理工大学优秀党员
l西安理工大学科研先进个人
l西安理工大学青年教师课堂观摩教学比赛二等奖