个人概况:  | 
     
  | 
  
  
   姓    名  | 
   张珂皓  | 
  
  
   职    称  | 
   讲师  | 
  
  
   研究方向  | 
   环境功能陶瓷,电化学氧化技术  | 
  
  
   邮    箱  | 
   zhangkehao@zzu.edu.cn  | 
  
  
   教育和科研工作经历:  | 
  
  
   2024.10  - 至今,郑州大学,讲师 2020.09-2024.06,郑州大学,材料科学与工程,博士 2017.09-2020.06,郑州大学,材料工程,硕士 2012.09-2016.06,兰州大学,物理科学与技术,学士  | 
  
  
   研究介绍:   | 
  
  
   研究方向主要包括:(1)环境功能陶瓷研发;(2)电化学氧化技术;(3)污水处理。发表论文10余篇,申请或授权发明专利10余项。  | 
  
  
   荣誉与奖励:  | 
  
  
   2020年第十二届“挑战杯”中国大学生创业计划竞赛铜奖  2020年第六届中国“互联网+”大学生创新创业大赛铜奖   2020年“好设计”华中赛区银奖   | 
  
  
   代表性论著:(限10项内)  | 
  
  
   (1) Kehao Zhang; Hailong Wang; Gang Shao; Wen Liu; Bingbing Fan; Hongxia Lu; Hongliang Xu; Rui Zhang; Ning Yan; Yanjun Zhao; Yanchun Zhou; Preparation and properties of boron-doped diamond composites fabricated by high-pressure and high-temperature sintering, Ceramics International, 2019, 45(7): 9271-9277  | 
  
  
   (2) Kehao Zhang; Yuran Han; Peiheng Wang; Zhaoshuang Bu; Beibei Wang; Huanhuan Shi; Hailong Wang; Wei Zhang; Shixiang Gao; Qingguo Huang; 3D printed lanthanide-doped Ti4O7 reactive membrane for efficient electrochemical disinfection and degradation of antibiotic resistance genes, Chemical Engineering Journal, 2024, 502: 157829  | 
  
  
   (3) Kehao Zhang; Yuran Han; Beibei Wang; Huanhuan Shi; Hailong Wang; Shixiang Gao; Qingguo Huang; Tailoring of orderly CeO2/Pt loaded Ti4O7 reactive electrochemical membranes for efficient electrooxidation of antimicrobial dichlorophen, Chemical Engineering Journal, 2024, 496: 153969  | 
  
  
   (4) Kehao Zhang; Ruifeng Wang; Hailong Wang; Mingliang Li; Pengbo Zhao; Yaye Wang; BeibeiWang; Huanhuan Shi; Wei Zhang; Shixiang Gao; Qingguo Huang ; Electrooxidation of chlorophene and dichlorophen by reactive electrochemical membrane: Key determining factors of removal efficiency, Environmental Research, 2024, 241: 117612  | 
  
  
   (5) Kehao Zhang; Hailong Wang; Yanjun Zhao; Yaohui Xi; Bin Liu; Jianqi Xi; Gang Shao; Bingbing Fan; Hongxia Lu; Hongliang Xu; Rui Zhang; Ning Yan; Zhiqiang Wang; Preparation and electrochemical properties of boron-doped polycrystalline diamond film with five-fold twin structure, Applied Surface Science, 2021, 568: 150977  |