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9篇 您的检索式:作者名="Ge Qinqin"
    题名 作者 年代 出处 被引量
1High performance zeolite LTA pervaporation membranes on ceramic hollow fibers by dipcoat- ing-wiping seed deposition 显示文摘Wang Zhengbao Ge Qinqin Shao Jia 2009Journal of the American Chemical Society2009,131,20:1
2High-performance zeolite NaA membranes on polymer-zeolite composite hollow fiber suppor- ts 显示文摘Ge Qinqin Wang Zhengbao Yan Yushan 2009Journal of the American Chemical Society2009,131,17:1
3The preparation of zeolite NaA membranes on the inner surface of hollow fiber supports 显示文摘Lai Lulu Shao Jia Ge Qinqin 2012Journal of Membrane Science2012,40,9410:1
4Influences of Seeds on the Properties of Zeolite NaA Memhranes on Alumina Hol- low Fibers 显示文摘Shao Jia Ge Qinqin Shan Lijun 2011Ind Eng Chem Res2011,50,:1
5High performance zeolite LTA pervaporation membranes on ceramic hollow fibers by dipcoating-wiping seed deposition显示文摘Wang Zhengbao Ge Qinqin Shao Jia 2009J Am Chem Soc2009,131,20:1
6Fabrication of immobilized nickel nanoclusters decorated by CxNy species for cellulose conversion to C2,3 oxygenated compounds:Rational design via typical C-and N-sources显示文摘Production of chemicals and fuels from microcrystalline cellulose has inspired scholars’ attention. Deactivation of metallic catalysts including acid leaching and hydrothermal aggregation is still one of the core issues in these systems. To address these problems, we designed and fabricated a series of Ni-W/SiO2 catalysts, which were decorated by CxNy species using C-and N- sources and applied in cellulose conversion to C2,3 oxygenated compounds. The Ni-W/SiO2@CxNy catalysts, underwent complexing and selfassembling process, exhibited special heterojunctions, accompanying strong interactions mainly among Ni phase and CxNy layers. Catalytic results showed that the heterojunctions and outer CxNy layers extensively enhanced productions of hydroxyacetone(HDA) and ethylene glycol(EG) and promoted the hydrothermal stability through prospering in concentration of Lewis pairs from Ni–N—N structure and immobilizing the metallic nanoclusters. 48.25% of EG was yielded under 5.0 MPa H2 pressurized 240 ℃ water for 2.0 h. The Lewis pair further improved the formation of HDA with 20.92% yield. High hydrothermal stability of NiW/SiO2@CxNy catalyst was proved according to the recycling results and trace leaching concentration of Ni and W. This construction of metallic catalysts exploited a new strategy to manufacture extraordinary durability of metallic nanoclusters for cellulose conversion under harsh reaction conditions.Zhuqian Xiao Xiaolei Wang Qinqin Yang Chuang Xing Qing Ge Xikun Gai Jianwei Mao Jianbing Ji 2020Journal of Energy Chemistry2020,29,11:1
7Effects of the synthesis hydrogel on the formation of zeolite LTA membranes 显示文摘GE Qinqin SHAO Jia WANG Zhengbao 2012Microporous Mesoporous Mater2012,151,:1
8Nanotechnology for cardiovascular diseases显示文摘Cardiovascular diseases have become the major killers in today’s world,among which coronary artery diseases(CADs)make the greatest contributions to morbidity and mortality.Although state-of-the-art technologies have increased our knowledge of the cardiovascular system,the current diagnosis and treatment modalities for CADs still have limitations.As an emerging cross-disciplinary approach.Qinqin Hu Zheyan Fang Junbo Ge Hua Li 2022The Innovation2022,3,2:0
9CMT2D neuropathy is influenced by vitamin D-mediated environmental pathway显示文摘Dear Editor,Peripheral neuropathy is a group of devastating diseases affecting periphe-ral nerves and may cause symptoms such as extreme numbness,muscle weakness,and paralysis.Currently,there are no effective therapies for these diseases.Great progress has been made in identifying genetic causes for peripheral neuropathy owing to the advances in genetic testing in the last decade.For example,>100 genes have been identified to be associated with Charcot–Marie–Tooth(CMT)neuropathy,a group of disorders among the most common forms of inherited peripheral neuropathy.Huaqing Liu Mingmin Tang Hualin Yu Tongfei Liu Qinqin Cui Linfan Gu Zhi-Ying Wu Nengyin Sheng Xiang-Lei Yang Linghui Zeng Ge Bai 2023Journal of Molecular Cell Biology2023,15,4:0
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