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6篇 您的检索式:作者名="Fengying Hong"
    题名 作者 年代 出处 被引量
1Adenine Phosphoribosyl Transferase 1 is a Key Enzyme Catalyzing Cytokinin Conversion from Nucleobases to Nucleotides in Arabidopsis显示文摘在植物,细胞激动素包括细胞激动素生合成,互变现象, inactivation,和降级,新陈代谢的进程在细胞激动素动态平衡和植物开发的规定起关键作用。嘌呤新陈代谢的酶被暗示了在以前的工作催化细胞激动素互变现象。在这研究,我们报导腺嘌 Phosphoribosyl Transferase 1 (APT1 ) 是高剂量的细胞激动素抵抗的异种的原因的基因。APT1 从免费的底催化细胞激动素变换到核苷酸,并且在 Arabidopsis 腺嘌 Phosphoribosyl Transferase 家庭的五个成员之中是机能上地占优势的。在工厂的 APT1 活动的损失导致细胞激动素底的过量累积,因此唤起无数调整细胞激动素的回答例如推迟的叶老朽, anthocyanin 累积,和下游的基因表示。因此,我们的学习把 APT1 定义为由 phosphoribosylation 参予细胞激动素 inactivation 的关键新陈代谢的酶。Xinyan Zhang Yutao Chen Xin Lin Xinyu Hong Ying Zhu Wenyang Li Wenrong He Fengying An Hongwei Guo 2013Molecular Plant2013,6,5:2
2Serum CRP levels are equally elevated in newly diagnosed type 2 diabetes and impaired glucose tolerance and related to adiponectin levels and insulin sensitivity显示文摘Guoyue Yuan Libin Zhou Jinfeng Tang Ying Yang Weiqiong Gu Fengying Li Jie Hong Yanyun Gu Xiaoying Li Guang Ning Mingdao Chen 2005Diabetes Research and Clinical Practice2005,,3:1
3Piperidine and 3,3,4,4,5,5-hexafluoropiperdine as terminal groups:Syntheses and properties as new liquid crystals显示文摘Hong Fengying Li Huijuan Zhu Dezhao 2014Journal of Fluorine Chemistry2014,168,:1
4The Cenozoic tectonic evolution of the Great North China: two types of rifting and crustal necking in the Great North China and their tectonic implications 显示文摘Ye Hong Zhang Botao Mao Fengying 1987Tectonophysics1987,133,:1
5Amide as Terminal Groups: Synthesis and Properties as New Tolane-Type Liquid Crystals显示文摘与终端组被准备了的酰胺组一起的一系列新奇 tolane 类型液体晶体。终端酰胺组被修改,并且液体水晶阶段上的这些结构的参数的影响被极化调查光显微镜(POM ) 和微分扫描热量测定(DSC ) 。三这些新混合物展出 nematic 阶段,好热稳定性。一般来说,有结束组织的酰胺的这些液体晶体有高融化的点和阶段转变温度,它源于氢契约。基于理论计算,有强壮的电子捐赠的这些新分子是的酰胺结束组比 tolane 有更狭窄的 HOMO-LUMO 精力差距和更高的偶极子时刻。Hong Zhang Fengying Hong Dezhao Zhu Zhengce Xia Hongxiang Wu Hui Wang Zhuo Zeng 2015Chinese Journal of Chemistry2015,33,7:0
6Engineering Strategies for Suppressing the Shuttle Effect in Lithium–Sulfur Batteries显示文摘Lithium–sulfur(Li–S)batteries are supposed to be one of the most potential next-generation batteries owing to their high theoretical capacity and low cost.Nevertheless,the shuttle effect of firm multi-step two-electron reaction between sulfur and lithium in liquid electrolyte makes the capacity much smaller than the theoretical value.Many methods were proposed for inhibiting the shuttle effect of polysulfide,improving corresponding redox kinetics and enhancing the integral performance of Li–S batteries.Here,we will comprehensively and systematically summarize the strategies for inhibiting the shuttle effect from all components of Li–S batteries.First,the electrochemical principles/mechanism and origin of the shuttle effect are described in detail.Moreover,the efficient strategies,including boosting the sulfur conversion rate of sulfur,confining sulfur or lithium polysulfides(LPS)within cathode host,confining LPS in the shield layer,and preventing LPS from contacting the anode,will be discussed to suppress the shuttle effect.Then,recent advances in inhibition of shuttle effect in cathode,electrolyte,separator,and anode with the aforementioned strategies have been summarized to direct the further design of efficient materials for Li–S batteries.Finally,we present prospects for inhibition of the LPS shuttle and potential development directions in Li–S batteries.Jiayi Li Li Gao Fengying Pan Cheng Gong Limeng Sun Hong Gao Jinqiang Zhang Yufei Zhao Guoxiu Wang Hao Liu 2024Nano-Micro Letters2024,16,1:0
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