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14篇 您的检索式:作者名="SHAN Changsheng"
    题名 作者 年代 出处 被引量
1Single-atom catalysts supported on ordered porous materials:Synthetic strategies and applications显示文摘Single-atom catalysts(SACs)are attracting extensive attention due to their incredibly catalytic activity and selectivity,high utilization of metal atoms,and obvious cost reduction.The unique ordered porous materials(OPMs)are promising carriers for stabilizing single atoms due to their large surface areas and uniformly tunable pore sizes.Meantime,the geometric and electronic structures of single-atom metals can be tuned by the interaction between the single-atoms(SAs)and OPMs to enhance the catalytic activity of SACs.The SACs based on OPMs,such as zeolites,metal-organic frameworks,and ordered mesoporous materials,have been developing fast recently.Herein,we review recent advancements on structural feature,synthetic strategy,characterization technique,and catalytic applications of OPMs-based SACs.The opportunities and challenges about SAs/OPMs are also provided to develop the novel catalysts with superior catalytic performances in the future.Kaiwen Xue Yan Mo Baojun Long Wen Wei Changsheng Shan Shaojun Guo Li Niu 2022InfoMat2022,4,6:3
2显示文摘Shan Changsheng Yang Huafeng Han Dongxue 2010Biosensors and Bioelectronics2010,25,5:1
3Direct electrochemistry of glucose oxidase and biosensing for glucose based on graphene显示文摘SHAN Changsheng YANG Huafeng SONG Jiangfeng 2009Anal Chem2009,81,6:1
4显示文摘Yang Huaieng Li Fenghua Shan Changsheng 2009J Ma- ter Chem2009,19,26:1
5显示文摘Shan Changsheng Yang Huafeng Han Dongxue 2010Bi- osens Bioelectron2010,25,5:1
6Electrochemical determination of morphine at ordered mesoporous carbon modified glassy carbon electrode显示文摘Li Fei Song Jixia Shan Changsheng 2010Biosensors and Bioelectronics2010,25,6:1
7Direct Electrochemistry of Glucose Oxidase and Biosensing for Glucose 15asecl on Graphene显示文摘Changsheng Shan Huafeng Yang Jiangfeng Song 2009Analytical Chemistry2009,81,6:1
8Covalent functionalization of chemically converted graphene sheets via silane and its reinforcement 显示文摘YANG Huafeng LI Fenghua SHAN Changsheng 2009Journal of Materials Chemistry2009,19,26:1
9Direct electrochemistry of glucose oxidase and biosensing for glucose based on graphene显示文摘Shan Changsheng Yang HuaIeng Song Jianfeng 2009Anal Chem2009,81,:1
10Direct electrochemistry of glucose oxidase and biosensing for glucose based on graphene显示文摘Shan Changsheng Yang Huafeng Song Jiangfeng 2009Anal Chem2009,81,:1
11Fabrication and electrochemical characterization of electrostatic assembly of polyelectrolyte-functionalized ionic liquid and Prussian blue ultrathin films显示文摘LI Fenghua SHAN Changsheng BU Xinyuan 2009J Electroanal Chem2009,616,12:1
12Structural investigation of the zirconium-titanium based amino trimethylene phosphonate hybrid coating on aluminum alloy显示文摘A zirconium-titanium based amino trimethylene phosphonate hybrid coating on AA6061 aluminum alloys was formed by dipping in a fluorotitanate/zirconate acid and amino trimethylene phosphonic acid (ATMP) solution for improving the lacquer adhesion and corrosion resistance as a substitute of chromate coatings. The morphology and structure of the hybrid coating were studied by means of scanning electron microscopy (SEM) and atomic force microscopy (AFM). The surface composition and structure characteristics were also investigated by means of X-ray photoelectron spectroscopy (XPS) and Fourier transformation infra-red spectroscopy (FTIR). The results of SEM and AFM show that the hybrid coating present piece particle distribution which is much denser than that of the zirconium-titanium coating. The results of XPS and FTIR indicate that the hybrid coating is a hybrid composite structure composed of both the zirconium-titanium and amino trimethylene phosphonate coatings.Shuanghong WANG Changsheng LIU Fengjun SHAN 2009Acta Metallurgica Sinica(English Letters)2009,22,3:0
13Pt_(1)/Ni_(6)Co_(1)layered double hydroxides/N-doped graphene for electrochemical non-enzymatic glucose sensing by synergistic enhancement of single atoms and doping显示文摘The development of novel single-atom catalysts is important for highly efficient electrochemical catalysis and sensing.In this work,a novel Pt single atoms(SAs)supported on Ni_(6)Co_(1)layered double hydroxides/nitrogen-doped graphene(Pt_(1)/Ni_(6)Co_(1)LDHs/NG)was constructed for electrochemical enzyme-free catalysis and sensing towards glucose.The loading of Pt single atoms increases with doping of Co atoms that generate more anchoring sites for Pt SAs.The resulting Pt_(1)/Ni_(6)Co_(1)LDHs/NG exhibits low oxidative potential of 0.440 V with high sensitivity of 273.78μA·mM^(−1)·cm^(−2)toward glucose,which are 85 mV lower and 15 times higher than those of Ni(OH)_(2),respectively.Pt_(1)/Ni_(6)Co_(1)LDHs/NG also shows excellent selectivity and great stability during 5-week testing.Theoretical and experimental results show that the boosted performance of Pt_(1)/Ni_(6)Co_(1)LDHs/NG originates from its stronger binding energy with glucose and the synergistic effect of Pt SAs,Co doping,and NG.This work provides a general strategy of designing highly active SACs for extending their application in electrochemical sensing.Baojun Long Peiyu Cao Yuanmeng Zhao Qianqian Fu Yan Mo Yueming Zhai Juejing Liu Xingyi Lyu Tao Li Xiaofeng Guo Changsheng Shan Minghua Zeng 2023Nano Research2023,16,1:0
14STUDY ON COPYING QUALITY IN CONTOUR GRINDING显示文摘STUDYONCOPYINGQUALITYINCONTOURGRINDINGSTUDYONCOPYINGQUALITYINCONTOURGRINDINGWangWanshan;WangBo;LuShubin;ShanRuilan(Northeaste...Wang Wanshan Wang Bo Lu Shubin Shan Ruilan(Northeastern University)Guo Changsheng(University of Massachusetts, U .S.A.) 1995Chinese Journal of Mechanical Engineering1995,8,1:0
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