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5篇 您的检索式:作者名="Youzhen Liu"
    题名 作者 年代 出处 被引量
1Balancing sub‐reaction activity to boost electrocatalytic urea synthesis using a metal‐free electrocatalyst显示文摘Electrocatalytic urea synthesis via coupling of nitrate with CO_(2)is considered as a promising alternative to the industrial urea synthetic process.However,the requirement of sub-reaction(NO_(3)RR and CO_(2)RR)activities for efficient urea synthesis is not clear and the related reaction mechanisms remain obscure.Here,the construction,breaking,and rebuilding of the sub-reaction activity balance would be accompanied by the corresponding regulation in urea synthesis,and the balance of sub-reaction activities was proven to play a vital role in efficient urea synthesis.With rational design,a urea yield rate of 610.6 mg h−1 gcat.−1 was realized on the N-doped carbon electrocatalyst,superior to that of noble-metal electrocatalysts.Based on the operando SRFTIR measurements,we proposed that urea synthesis arises from the coupling of^(*)NO and^(*)CO to generate the key intermediate of^(*)OCNO.This work provides new insights and guidelines into urea synthesis from the aspect of activity balance.Chen Chen Shuang Li Xiaorong Zhu Shuowen Bo Kai Cheng Nihan He Mengyi Qiu Chao Xie Dezhong Song Youzhen Liu Wei Chen Yafei Li Qinghua Liu Conggang Li Shuangyin Wang 2023Carbon Energy2023,5,10:2
2Influence of Plasma Modified Carbon Nanotubes on the Resistance Sensitiveness of Cement显示文摘The surface of carbon nanotubes(CNTs)was modified by plasma to improve the dispersion,conductivity and adsorption properties of carbon nanotubes.Cement-based composites made with plasmatreated carbon nanotubes(P-CNTs)at different perntages were tested under repeated cyclic axial compressive stress by four electrode methods to measure the electric resistance.Those made with CNTs without plasma treatment as controls were tested also.The results showed that electric resistance change values of the cement mortar with P-CNT and CNT were all monatomic corresponding to the cyclic loading.When the water-cement ratio of the mortar was fixed,increasing of the P-CNT/CNT content would increase the resistance change value of the mortars added with P-CNT/CNT,and the sensitivity performance.It has certain engineering application value.朱远恒 孙敏 LI Zhendong LIU Yangyang FANG Youzhen 2023Journal of Wuhan University of Technology(Materials Science)2023,38,1:1
3NSD2 Is Recruited through Its PHD Domain to Oncogenic Gene Loci to Drive Multiple Myeloma显示文摘Zheng Huang Haiping Wu Shannon Chuai Fiona Xu Feng Yan Nathan Englund Zhaofu Wang Hailong Zhang Ming Fang Youzhen Wang Justin Gu Man Zhang Teddy Yang Kehao Zhao Yanyan Yu Jingquan Dai Wei Yi Shaolian Zhou Qian Li Jing Wu Jun Liu Xu Wu Homan Chan Chris Lu 2013Cancer Research2013,,20:1
4A positive feedback regulatory loop,SAAtNAP-SAG202/SARD1-ICS1-SA,in SA biosynthesis involved in leaf senescence but not defense response显示文摘Salicylic acid(SA)is an important plant hormone that regulates defense responses and leaf senescence.It is imperative to understand upstream factors that regulate genes of SA biosynthesis.SAG202/SARD1 is a key regulator for isochorismate synthase 1(ICS1)induction and SA biosynthesis in defense responses.The regulatory mechanism of SA biosynthesis during leaf senescence is not well understood.Here we show that AtNAP,a senescence-specific NAC family transcription factor,directly regulates a senescence-associated gene named SAG202 as revealed in yeast one-hybrid and in planta assays.Inducible overexpreesion of AtNAP and SAG202 lead to high levels of SA and precocious senescence in leaves.Individual knockout mutants of sag202 and ics1 have markedly reduced SA levels and display a significantly delayed leaf senescence phenotype.Furthermore,SA positively feedback regulates AtNAP and SAG202.Our research has uncovered a unique positive feedback regulatory loop,SA-AtNAP-SAG202-ICS1-SA,that operates to control SA biosynthesis associated with leaf senescence but not defense response.Yaxin Wang Bin Liu Youzhen Hu Su-Sheng Gan 2022Molecular Horticulture2022,2,1:0
5The leaf senescence-promoting transcription factor AtNAP activates its direct target gene CYTOKININ OXIDASE 3 to facilitate senescence processes by degrading cytokinins显示文摘Cytokinins(CKs)are a class of adenine-derived plant hormones that plays pervasive roles in plant growth and development including cell division,morphogenesis,lateral bud outgrowth,leaf expansion and senescence.CKs as a“fountain of youth”prolongs leaf longevity by inhibiting leaf senescence,and therefore must be catabolized for senescence to occur.AtNAP,a senescence-specific transcription factor has a key role in promoting leaf senescence.The role of AtNAP in regulating CK catabolism is unknown.Here we report the identification and characterization of AtNAP-AtCKX3(cytokinin oxidase 3)module by which CKs are catabolized during leaf senescence in Arabidopsis.Like AtNAP,AtCKX3 is highly upregulated during leaf senescence.When AtNAP is chemically induced AtCKX3 is co-induced;and when AtNAP is knocked out,the expression of AtCKX3 is abolished.AtNAP physically binds to the cis element of the AtCKX3 promoter to direct its expression as revealed by yeast one-hybrid assays and in planta experiments.Leaves of the atckx3 knockout lines have higher CK concentrations and a delayed senescence phenotype compared with those of WT.In contrast,leaves with inducible expression of AtCKX3 have lower CK concentrations and exhibit a precocious senescence phenotype compared with WT.This research reveals that AtNAP transcription factor˗AtCKX3 module regulates leaf senescence by connecting two antagonist plant hormones abscisic acid and CKs.Youzhen Hu Bin Liu Huazhong Ren Liping Chen Christopher B.Watkins Su-Sheng Gan 2021Molecular Horticulture2021,1,1:0
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