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8篇 您的检索式:作者名="Lin Shuhao"
    题名 作者 年代 出处 被引量
1Aerodynamic Performance of a Flapping Foil with Asymmetric Heaving Motion near a Wall显示文摘Xingjian Lin Shuhao Guo Jie Wu Jingwen Nan 2018Journal of Bionic Engineering2018,15,4:2
2Characterization of dioxins emissions from two municipal solid waste incinerations in Taiwan显示文摘Chang Moobee Lin Jungjeng Chang Shuhao 2002Atmospheric Environment2002,36,:1
3Annual Operation Status of SECRAL in 2009显示文摘Lu Wang Sun Liangting Feng Yucheng Guo Xiaohong Zhang Xuezheng Li Jingyu Cao Yun Wang Hui Ma Baohua Shang Yong Sha Shan Ma Hongyi Li Xixia Lin Shuhao Zhang Wenhui Jin Tao Zhao Huanyu Zhao Hongwei 2009近代物理研究所和兰州重离子加速器实验室年报:英文版2009,,1:1
4Operation of LECR3显示文摘Feng Yueheng Ma Baohua Wang Hui Li Jinyu Cao Yun Shang Yong Lu Wang Sha Shan Ma Hongyi Zhang Wenhui Lin Shuhao Li Xixia Zhao Huanyu Miao Tingting Guo Xiaohong Zhang Xuezhen Sun Liangting 2009近代物理研究所和兰州重离子加速器实验室年报:英文版2009,,1:1
56 - 18 Operation Status of On-line Ion Sources in 2012显示文摘FengYucheng Lu Wang Li Jinyu Zhang Wenhui Ma Hongyi Ma Baohua Wang Hui Li Jiaqing Lin Shuhao Cao Yun Sha Shan W u Qi Guo Junwei Fang Xing Yang Yao Li Xixia Zhang Hengjuan Zhao Huanyu Zhang Xuezhen Sun Liangting Zhao Hongwei 2012IMP & HIRFL Annual Report2012,,1:1
6Copper-tetracyanoquinodimethane-derived copper electrocatalysts for highly selective carbon dioxide reduction to ethylene显示文摘As one of the most promising CO_(2)utilization techniques,electrochemical CO_(2)reduction has recently received considerable attention.Cu is a unique electrocatalyst that can convert CO_(2)to value-added multi-carbon chemicals.Nevertheless,Cu catalysts are always limited by the poor selectivity and stability.Here,we report that using copper-tetracyanoquinodimethane(CuTCNQ)derived Cu nanoparticles as efficient electrocatalysts for conversion of CO_(2)to ethylene characteristic with high selectivity and stability,showing 56%Faradaic efficiency(FE)to C2H4 at−1.3 V vs.reversible hydrogen electrode(RHE).Upon the electrochemical CO_(2)reduction,CuTCNQ slowly reconstructs to Cu nanoparticles with abundant grain boundaries and residual Cu+on the surface.Theoretical calculation and operando characterization disclose that both as-formed Cu nanoparticle grain boundaries and residual Cu+endow the catalyst with high selectivity toward ethylene.Furthermore,during the reconstruction of CuTCNQ to Cu nanoparticles,the grain boundaries Cu surface is slowly refreshed by continual addition of Cu atoms,thus inhibiting the surface passivation and guaranteeing the electrocatalytic stability.Xuewei Huang Dawei Wang Shuhao Yan Pengfei An Jianyu Han Zhiyu Guo Xinwei Li Zhongjun Chen Lin Chang Siyu Lu Zhiyong Tang 2022Nano Research2022,15,9:0
76-42 Status Report of On-line Ion Sources in 2014显示文摘In 2014, the service time of the two on-line ion sources of HIRFL-CSR accelerator facility, SECRAL and LECR3is 3 594 and 3 457.2 h, respectively, amouting to 7051.2 h. 17 kinds of ion beams have been delivered successfull.The failure time is shrinked down to 8 h in this year, which is the lowest among these years. Table 1 summarizesthe main information about the ion beams delievered by the two ion sources. Fig. 1 shows the comparison of theion beam delivering time for HIRFL-CSR accelerator facitily from the three ion sources, LECR3, SECRAL andLAPECR1 since 2007.Feng Yucheng Lu Wang Zhang Wenhui Ma Hongyi Yang Yao Fang Xing Guo Junwei Ma Baohua Wang Hui Qian Cheng Zhang Junjie Lin Shuhao Li Jibo Li Xixia Zhang Hengjuan Zhang Xuezhen Sun Liangting 2014IMP & HIRFL Annual Report2014,,1:0
8Highly Conductive Proton Selectivity Membrane Enabled by Hollow Carbon Sieving Nanospheres for Energy Storage Devices显示文摘Ion conductive membranes(ICMs)with highly conductive proton selectivity are of significant importance and greatly desired for energy storage devices.However,it is extremely challenging to construct fast proton-selective transport channels in ICMs.Herein,a membrane with highly conductive proton selectivity was fabricated by incorporating porous carbon sieving nanospheres with a hollow structure(HCSNs)in a polymer matrix.Due to the precise ion sieving ability of the microporous carbon shells and the fast proton transport through their accessible internal cavities,this advanced membrane presented a proton conductivity(0.084 S·cm^(-1))superior to those of a commercial Nation 212(N212)membrane(0.033S·cm^(-1))and a pure polymer membrane(0.049 S·cm^(-1)).The corresponding proton selectivity of the membrane(6.68×10^(5) S·min·cm^(-3))was found to be enhanced by about 5.9-fold and 4.3-fold,respectively,compared with those of the N212 membrane(1.13×10^(5) S·min·cm^(-3))and the pure membrane(1.56×10^(5) S·min·cm^(-3)).Low-field nuclear magnetic resonance(LF-NMR)clearly revealed the fast protonselective transport channels enabled by the HCSNs in the polymeric membrane.The proposed membrane exhibited an outstanding energy efficiency(EE)of 84%and long-term stability over 1400 cycles with a0.065%capacity decay per cycle at 120 mA·cm^(-2) in a typical vanadium flow battery(VFB)system.Kang Huang Shuhao Lin Yu Xia Yongsheng Xia Feiyan Mu Yuqin Lu Hongyan Cao Yixing Wang Weihong Xing Zhi Xu 2023Engineering2023,,9:0
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