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8篇 您的检索式:作者名="Shengchi"
    题名 作者 年代 出处 被引量
1Application of bacterial cellulose pellets in enzyme immobilization显示文摘Wu Shengchi Lia Yingke 0,,:1
2Characteristics of a rotating packed bed显示文摘LIU Hwaishen LIN Chaichang WU Shengchi 1996Ind Eng Chem Res1996,35,4:1
3Preparation of porous car- bons from phenol-formaldehyde resins with chemical and physical activation显示文摘Teng Hsishent Wang Shengchi 2000Carbon2000,38,6:1
4Atomistic simulations for adsorption and separation of flue gas in MFI zeolite and MFI/MCM-41 micro/mesoporous composite显示文摘Adsorption of pure CO_(2) and N2 and separation of CO_(2)/N2 mixture in MFI zeolite and MFI/MCM-41 micro/mesoporous composite have been studied by using atomistic simulations.Fully atomistic models of MFI and MFI/MCM-41 are constructed and characterized.A bimodal pore size distribution is observed in MFI/MCM-41 from simulated small-and broad-angle X-ray diffrac-tion patterns.The density of MFI/MCM-41 is lower than MFI,while its free volume and specific surface area are greater than MFI due to the presence of mesopores.CO_(2) is preferentially adsorbed than N2,and thus,the loading and isosteric heat of CO_(2) are greater than N2 in both MFI and MFI/MCM-41.CO_(2) isotherm in MFI/MCM-41 is similar to that in MFI at low pressures,but resembles that in MCM-41 at high pressures.N2 shows similar amount of loading in MFI,MCM-41 and MFI/MCM-41.The selectivity of CO_(2) over N2 in the three adsorbents decreases in the order of MFI>MFI/MCM-41>MCM-41.With increasing pressure,the selectivity increases in MFI and MFI/MCM-41,but decreases in MCM-41.The self-diffusivity of CO_(2) and N2 in MFI decreases as loading increases,while in MFI/MCM-41,itfirst increases and then drops.Shengchi ZHUO Yongmin HUANG Jun HU Honglai LIU 2011Frontiers of Chemical Science and Engineering2011,5,2:1
5Computer simulation for adsorption of CO2, N2 and flue gas in a mimeticMCM-41显示文摘Zhuo Shengchi Huang Yongmin Hu Jun 2008JPhysChemC2008,112,11:1
6Preparation of porous carbons from phenol-formaldehyde resins with chemical and physical activation显示文摘TENG H WANG Shengchi 2000Carbon2000,38,:1
7Antiproliferative constituents from Gynura divaricata subsp, formosana 显示文摘Chen Shengchi Hong Liling Chang Chungyang 2003Chin Pharm J2003,55,2:1
8Hierarchical carbon nanosheet confined defective MoS_(x) cathode towards long-cycling zinc-ion-battery显示文摘Aqueous zinc-ion batteries(ZIBs)have attracted increasing attention due to their low cost and high safety.MoS_(2) is a promising cathode material for aqueous ZIBs due to its favorable Zn^(2+)accommodation ability.However,the structural strain and large volume changes during intercalation/deintercalation lead to exfoliation of active materials from substrate and cause irreversible capacity fading.In this work,a highly stable cathode was developed by designing a hierarchical carbon nanosheet-confined defective MoS_(x)material(CNS@MoS_(x)).This cathode material exhibits an excellent cycling stability with high capacity retention of 88.3%and~100%Coulombic efficiency after 400 cycles at 1.2 A·g^(-1),much superior compared to bare MoS_(2).Density functional theory(DFT)calculations combined with experiments illustrate that the promising electrochemical properties of CNS@MoS_(x)are due to the unique porous conductive structure of CNS with abundant active sites to anchor MoS_(x)via strong chemical bonding,enabling MoS_(x)to be firmly confined on the substrate.Moreover,this unique hierarchical complex structure ensures the fast migration of Zn^(2+)within MoS_(x)interlayer.Xiaoqi Wang Shimeng Zhang Rui Yang Shengchi Bai Jianbo Li Yu Wu Bowen Jin Xu Jin Mingfei Shao Bo Wang 2023Nano Research2023,16,7:0
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