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5篇 您的检索式:作者名="Liuming Yan"
    题名 作者 年代 出处 被引量
1Optical super-resolution microscopy and its applications in nano-catalysis显示文摘常规光显微镜学的分辨率仅仅是 200 nm,它为许多应用程序正在变得越来越不足够。为了超过衍射,限制了分辨率,超级决定的显微镜学(SRM ) 被开发了完成一~十纳米的高分辨率。涉及 SRM 的技术能被分配进二个宽广范畴,也就是真的超级决定的技术和功能的超级决定的技术。在功能的超级决定的技术,随机的超级决定的显微镜学(SSRM ) 广泛地由于它的低开销,简单操作,和高分辨率被使用。在 SSRM 的原则进程是积累许多衍射有限 emitters 的坐标(例如,单个荧光灯分子) 在由本地化点的矩心的对象上散布函数(PSF ) ,然后重建用这些的对象的图象协调。什么时候衍射有限 emitters 由 nanoparticles 参加关于催化作用的催化反应,活动分发和运动信息能被 SSRM 获得。SSRM 被使用了并且在催化作用的几块地里展出了突出的优点,例如金属 nanoparticle 催化作用,分子的筛催化作用,和光催化。因为 SSRM 能在一 nanoparticle 以内解决催化活动,它答应加速新、更好的催化剂的发展和发现。这评论将在 nano 催化作用介绍简短介绍给 SRM,和对 SSRM 和它的应用的详细描述。Wenhui Wang Junnan Gu Ting He Yangbin Shen Shaobo Xi Lei Tian Feifei Li Haoyuan Li Liuming Yan Xiaochun Zhou 2015Nano Research2015,8,2:3
2Nano-layered LiFePO4 particles converted from nano-layered ferrous phenylphosphonate templates显示文摘Chen Jin Yan Liuming Yue Baohua 2012Journal of Power Sources2012,209,1:1
3Electron-ion collider in China显示文摘Lepton scattering is an established ideal tool for studying inner structure of small particles such as nucleons as well as nuclei.As a future high energy nuclear physics project,an Electron-ion collider in China(EicC)has been proposed.It will be constructed based on an upgraded heavy-ion accelerator,High Intensity heavy-ion Accelerator Facility(HIAF)which is currently under construction,together with a new electron ring.The proposed collider will provide highly polarized electrons(with a po-larization of 80%)and protons(with a polarization of 70%)with variable center of mass energies from 15 to 20 GeV and the luminosity of(2–3)×1033 cm^(−2)·s^(−1).Polarized deuterons and Helium-3,as well as unpolarized ion beams from Carbon to Uranium,will be also available at the EicC.The main foci of the EicC will be precision measurements of the structure of the nucleon in the sea quark region,including 3D tomography of nucleon;the partonic structure of nuclei and the parton interaction with the nuclear environment;the exotic states,especially those with heavy flavor quark contents.In addition,issues fundamental to understanding the origin of mass could be addressed by measurements of heavy quarkonia near-threshold production at the EicC.In order to achieve the above-mentioned physics goals,a hermetical detector system will be constructed with cutting-edge technologies.This document is the result of collective contributions and valuable inputs from experts across the globe.The EicC physics program complements the ongoing scientific programs at the Jefferson Laboratory and the future EIC project in the United States.The success of this project will also advance both nuclear and particle physics as well as accelerator and detector technology in China.Daniele PAnderle Valerio Bertone Xu Cao Lei Chang Ningbo Chang Gu Chen Xurong Chen Zhuojun Chen Zhufang Cui Lingyun Dai Weitian Deng Minghui Ding Xu Feng Chang Gong Longcheng Gui Feng-Kun Guo Chengdong Han Jun He Tie-Jiun Hou Hongxia Huang Yin Huang KrešImir KumeričKi LPKaptari Demin Li Hengne Li Minxiang Li Xueqian Li Yutie Liang Zuotang Liang Chen Liu Chuan Liu Guoming Liu Jie Liu Liuming Liu Xiang Liu Tianbo Liu Xiaofeng Luo Zhun Lyu Boqiang Ma Fu Ma Jianping Ma Yugang Ma Lijun Mao Cédric Mezrag HervéMoutarde Jialun Ping Sixue Qin Hang Ren Craig DRoberts Juan Rojo Guodong Shen Chao Shi Qintao Song Hao Sun PawełSznajder Enke Wang Fan Wang Qian Wang Rong Wang Ruiru Wang Taofeng Wang Wei Wang Xiaoyu Wang Xiaoyun Wang Jiajun Wu Xinggang Wu Lei Xia Bowen Xiao Guoqing Xiao Ju-Jun Xie Yaping Xie Hongxi Xing Hushan Xu Nu Xu Shusheng Xu Mengshi Yan Wenbiao Yan Wencheng Yan Xinhu Yan Jiancheng Yang Yi-Bo Yang Zhi Yang Deliang Yao Zhihong Ye Peilin Yin C-PYuan Wenlong Zhan Jianhui Zhang Jinlong Zhang Pengming Zhang Yifei Zhang Chao-Hsi Chang Zhenyu Zhang Hongwei Zhao Kuang-Ta Chao Qiang Zhao Yuxiang Zhao Zhengguo Zhao Liang Zheng Jian Zhou Xiang Zhou Xiaorong Zhou Bingsong Zou Liping Zou 2021Frontiers of physics2021,16,6:1
4Structural and Transport Characteristics of UCI3 in Molten LiCI-KCI Mixture: a Molecular Dynamics Simulation Study显示文摘JIANG Yao WANG Ning PENG Shummg YAN Liuming 2015Chemical Research in Chinese Universities2015,31,2:0
5Bismuth nanorods confined in hollow carbon structures for high performance sodium-and potassium-ion batteries显示文摘Bismuth has drawn widespread attention as a prospective alloying-type anode for sodium-ion batteries(SIBs)and potassium-ion batteries(PIBs)due to its large volumetric capacity.However,such material encounters drastic particle pulverization and overgrowth of solid-electrolyte interphase(SEI)upon repeated(de)alloying,thus causing poor rate and cycling degradation.Herein,we report a unique structure design with bismuth nanorods confined in hollow N,S-codoped carbon nanotubes(Bi@NS-C)fabricated by a solvothermal method and in-situ thermal reduction.Ex-situ SEM observations confirm that such a design can significantly suppress the size fining of Bi nanorods,thus inhibiting the particle pulverization and repeated SEI growth upon charging/discharging.The as achieved Bi@NS-C demonstrates outstanding rate capability for SIBs(96.5%capacity retention at 30 A g^(-1) vs.1 A g^(-1)),and a record high rate performance for PIBs(399.5 m Ah g^(-1)@20 A g^(-1)).Notably,the as constructed full cell(Na_(3)V_(2)(PO_(4))_(3)@C|Bi@NS-C)demonstrates impressive performance with a high energy density of 219.8 W h kg^(-1) and a high-power density of 6443.3 W kg^(-1)(based on the total mass of active materials on both electrodes),outperforming the state-of-the-art literature.Hongli Long Xiuping Yin Xuan Wang Yufeng Zhao Liuming Yan 2022Journal of Energy Chemistry2022,31,4:0
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