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5篇 您的检索式:作者名="Xiao Fugui"
    题名 作者 年代 出处 被引量
1Influence of anisotropy of the magnesium alloy AZ31 sheets on warm negative incremental forming 显示文摘Zhang Qinglai Guo Hailing Xiao Fugui 2009Journal of Material Proeessing Technology2009,209,1516:1
2Warm Negative Incremental Forming of Magnesium Alloy AZ31 Sheet: New Lubrication Method显示文摘Zhang Qinglai Xiao Fugui Guo Hailing 2010Journal of Material Processing Technology2010,210,2:1
3Warm negative incremental forming of magnesium alloy AZ31 sheet:New lubricating method显示文摘Zhang Qinglai Xiao Fugui Guo Hailing 0,,02:1
4Integrating molybdenum sulfide selenide-based cathode with C-O-Mo heterointerface design and atomic engineering for superior aqueous Zn-ion batteries显示文摘Transition metal dichalcogenides(TMDs)have been regarded as promising cathodes for aqueous zinc-ion batteries(AZIBs)but suffer from sluggish reaction kinetics due to their poor conductivity and the strong electrostatic interaction between Zn-ion and cathode materials.Herein,a well-defined structure with MoSSe nanosheets vertically anchored on graphene is used as the cathode for AZIBs.The dissolution of Se into MoS2 lattice together with heterointerface design via developing C-O-Mo bonds improves the inherent conductivity,enlarges interlayer spacing,and generates abundant anionic vacancies.As a result,the Zn2+intercalation/deintercalation process is greatly improved,which is confirmed by theoretical modeling and ex-situ experimental results.Remarkably,the assembled AZIBs exhibit high-rate capability(124.2 mAh·g^(−1)at 5 A·g^(−1))and long cycling life(83%capacity retention after 1,200 cycles at 2 A·g^(−1)).Moreover,the assembled quasi-solid-state Zn-ion batteries demonstrate a stable cycling performance over 100 cycles and high capacity retention over 94%after 2,500 bending cycles.This study provides a new strategy to unlock the electrochemical activity of TMDs via interface design and atomic engineering,which can also be applied to other TMDs for multivalent batteries.Hong Li Biao Chen Runhua Gao Fugui Xu Xinzhu Wen Xiongwei Zhong Chuang Li Zhihong Piao Nantao Hu Xiao Xiao Feng Shao Guangmin Zhou Jinlong Yang 2023Nano Research2023,16,4:0
5The biological responses and mechanisms of endothelial cells to magnesium alloy显示文摘Due to its good biocompatibility and degradability,magnesium alloy(Mg alloy)has shown great promise in cardiovascular stent applications.Rapid stent re-endothelialization is derived from migrated and adhered endothelial cells(ECs),which is an effective way to reduce late thrombosis and inhibit hyperplasia.However,fundamental questions regarding Mg alloy affecting migration and adhesion of ECs are not fully understood.Here,we evaluated the effects of Mg alloy on the ECs proliferation,adhesion and migration.A global gene expression profiling of ECs co-culturing with Mg alloy was conducted,and the adhesion-and migration-related genes were examined.We found that Mg alloy had no adverse effects on ECs viability but significantly affected ECs migration and adhesion.Co-cultured with Mg alloy extract,ECs showed contractive adhesion morphology and decreased motility,which was supported by the down-regulation of adhesion-related genes(Paxillin and Vinculin)and migration-related genes(RAC 1,Rho A and CDC 42).Accordingly,the re-endothelialization of Mg alloy stent was inhibited in vivo.Our results may provide new inspiration for improving the broad application of Mg alloy stents.Zhe Hou Maolong Xiang Nuoya Chen Xiao Cai Bo Zhang Rifang Luo Li Yang Xiaoyi Ma Lifeng Zhou Fugui He Hongchi Yu Yunbing Wang 2021Regenerative Biomaterials2021,8,3:0
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