限定检索结果

检索条件"机构=Collaborative Innovation Center of Extreme Optics"
2 条 记 录,以下是1-10 订阅
视图:
排序:
Beam Line Design of Compact Laser Plasma Accelerator
收藏 引用
《Chinese Physics Letters》2017年 第5期34卷 44-47页
作者:朱军高 朱昆 陶立 耿易星 林晨 马文君 卢海洋 赵研英 陆元荣 陈佳洱 颜学庆State Key Laboratory of Nuclear Physics and Technology Peking University Collaborative Innovation Center of Extreme Optics Shanxi University 
A compact laser plasma accelerator that is a novel accelerator based on the interaction of ultra-intense laser and plasmas is being built now at Peking University. According to the results of experiments and numerical...
来源:详细信息评论
电子轴向拉伸提升贫氧环境海水电池性能
收藏 引用
《Science Bulletin》2023年 第24期68卷 3172-3180,M0005页
作者:唐全骏 白亮 张辰 孟蓉炜 王莉 耿传楠 郭勇 王飞飞 刘颖馨 宋贵生 凌国维 孙海涛 翁哲 杨全红School of Marine Science and TechnologyTianjin UniversityTianjin 300072China Nanoyang GroupTianjin Key Laboratory of Advanced Carbon and Electrochemical Energy StorageState Key Laboratory of Chemical EngineeringSchool of Chemical Engineering and TechnologyNational Industry-Education Integration Platform of Energy StorageCollaborative Innovation Center of Chemical Science and Engineering(Tianjin)Tianjin UniversityTianjin 300072China Haihe Laboratory of Sustainable Chemical TransformationsTianjin 300192China Marine Science and Technology CollegeZhejiang Ocean UniversityZhoushan 316000China Joint School of National University of Singapore and Tianjin UniversityInternational Campus of Tianjin UniversityBinhai New CityFuzhou 350207China State Key Laboratory of Precision SpectroscopySchool of Physics and Electronic ScienceEast China Normal UniversityShanghai 200241China Collaborative Innovation Center of Extreme OpticsShanxi UniversityTaiyuan 030006China 
长寿命溶解氧海水电池是深远海观测能源网络的重要组成单元,但海水贫氧复杂环境对设计高性能氧还原催化剂提出了重要挑战.本文以酞菁铁为模型催化剂,通过理论计算与实验验证,提出了活性位点电子轴向拉伸可大幅提升催化剂在极端贫氧环境...
来源:详细信息评论
聚类工具 回到顶部