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7篇 您的检索式:作者名="Ga Geng"
    题名 作者 年代 出处 被引量
1Inhibition of GSK3 phosphorylation of 13-catenin via phosphol~clated PPPSPXS motifs of Mnt coreceptor LRP6显示文摘Geng Wu He Huang Jose GA 2009PLoS One2009,4,3:1
2Lectin domain peptides from selectins interact with both cell surface ligands and Ca2+ ions显示文摘Geng JG Heavner GA McEver RP 0,,:1
3Monozygous twins with a microdeletion syndrome involving BTK, DDP1, and two other genes; evidence of intact dendritic cell development and TLR responses 显示文摘Jyonouchi H Geng L Toruner GA 2008Eur J Pediatr2008,167,3:1
4Lectin domain peptide from selectin interact with both cell surface ligands and calcium ions显示文摘Geng JG Heavener GA McEver RP 1992J Biol Chem1992,67,19:1
5Lectin domain peptides from selectins interact with both cell surface ligands and Ca2+ ions显示文摘Geng JG Heavner GA Mcever RP 1992Journal of Biological Chemistry1992,267,19:1
6Lectin domain peptides from selectins interact with both cell surface ligands and Ca2~ ions显示文摘Geng JG Heavner GA McEver RP 1992J Biol Chem1992,267,28:1
7Enhanced oxygen reduction kinetics by a porous heterostructured cathode for intermediate temperature solid oxide fuel cells显示文摘A novel porous heterostructured Nd_(0.8)Sr_(1.2)CoO_(4)±/Nd_(0.5)Sr_(0.5)CoO_(3-δ)(NSC_(214/113))cathode for intermediate tem-perature solid oxide fuel cells(IT-SOFCs)is developed to significantly enhance oxygen reduction reaction(ORR)kinetics.Compared to single-phase materials,the fabricated porous heterostructured NSC 214/113 shows optimized electrochemical properties,including a better conductivity,20 times faster surface oxygen exchange kinetics,and a comparatively lower area-specific resistance(0.065Ωcm^(2) at 800℃).The single cell with Ni-YSZ|YSZ-GDC|NSC_(214/113) configuration exhibits a high peak power density of 1.10 W cm^(−2) at 800℃,superior to other cells reported in literature with similar heterostructured cathodes.Moreover,the underlying mechanism of the ORR performance enhancement is further investigated,revealing that the formation of heterojunction can lead to a narrowed energy bandgap and a decrease of Co oxidation state,which further induce better conductivity,more available electrons and oxygen vacancies to enhance the ORR process.Taken together,our research also provides new insights into potential application of artificial intelligence(AI)method involved in materials in-telligent identification,cell state estimation,system diagnostic and optimization.The revolutionary force of AI,especially in the field of new electrode material development is now advancing in its full swing.More and greater breakthroughs are still expected.Yun Zheng Chenhuan Zhao Tong Wu Yifeng Li Wenqiang Zhang Jianxin Zhu Ga Geng Jing Chen Jianchen Wang Bo Yu Jiujun Zhang 2020Energy and AI2020,2,2:0
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