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14篇 您的检索式:作者名="Xiangjun Bi"
    题名 作者 年代 出处 被引量
1A random ice force model for narrow conical structures显示文摘 YUE Qianjin BI Xiangjun 2006Cold Regions Science and Teehnology2006,45,:1
2Ice force spectrum on narrow conical structures显示文摘Qianjin Yue Yan Qu Xiangjun Bi K rn Tuomo 2007Cold Regions Science and Technology(2007)2007,,:1
3Ice induced jacket structure vibration 显示文摘Yue Qianjin Bi Xiangjun 2000Journal of Cold Regions Engineering2000,14,2:1
4Ice-induced jacket structure vibrations in Bohai sea显示文摘Yue qianjin Bi xiangjun 2001Journal of Cold Regions Engineering2001,14,2:1
5Ice-induced jacket structure vibrations in Bohai sea显示文摘Yue Qianjin Bi Xiangjun 2001Journal of Cold Regions Engineering2001,14,2:1
6lee force spectrum on narrow conical structures 显示文摘Qu Yan Yue Qianjin Bi Xiangjun Karna Tuomo 2006Cold Regions Science and Technology2006,45,3:1
7Ice force spectrum on narrow conical structures显示文摘Yue Qianjin Qu Yan Bi Xiangjun 2007Cold Regions Science and Technology2007,49,2:1
8Ice-induced jacket structure vibrations in Bohai sea显示文摘Yue qianjin Bi xiangjun 2001Journal of Cold Regions Engineering2001,14,2:1
9Ice induced jacket structure vibration显示文摘Yue Qianjin Bi Xiangjun 0,,02:1
10Ice-induced jacket structure vibrations in Bohai sea显示文摘 BI Xiangjun 2001Journal of Cold Regions Engineering2001,14,2:1
11Ice force spectrum on narrow conical structures显示文摘Qianjin Yue Yah Qu Xiangjun Bi 2007Cold Regions Science and Technology2007,49,:1
12Ice-induced jacket structure vibrations in Bohai Sea显示文摘Yue Qianjin Bi Xiangjun 2000Journal of Cold Regions Engineering2000,14,2:1
13Investigation on step overcharge to self-heating behavior and mechanism analysis of lithium ion batteries显示文摘To obtain intrinsic overcharge boundary and investigate overcharge mechanism,here we propose an innovative method,the step overcharge test,to reduce the thermal crossover and distinguish the overcharge thermal behavior,including 5%state of charge(SOC)with small current overcharge and resting until the temperature equilibrium under adiabatic conditions.The intrinsic thermal response and the self-excitation behaviour are analysed through temperature and voltage changes during the step overcharge period.Experimental results show that the deintercalated state of the cathode is highly correlated to self-heating parasitic reactions.Before reaching the upper limit of Negative/Positive(N/P)ratio,the temperature changes little,the heat generation is significantly induced by the reversible heat(endothermic)and ohmic heat,which could balance each other.Following that the lithium metal is gradually deposited on the surface of the anode and reacts with electrolyte upon overcharge,inducing selfheating side reaction.However,this spontaneous thermal reaction could be“self-extinguished”.When the lithium in cathode is completely deintercalated,the boundary point of overcharge is about 4.7 V(~148%SOC,>40℃),and from this point,the self-heating behaviour could be continuously triggered until thermal runaway(TR)without additional overcharge.The whole static and spontaneous process lasts for 115 h and the side reaction heat is beyond 320,000 J.The continuous self-excitation behavior inside the battery is attributed to the interaction between the highly oxidized cathode and the solvent,which leads to the dissolution of metal ions.The dissolved metal ions destroy the SEI(solid electrolyte interphase)film on the surface of the deposited Li of anode,which induces the thermal reaction between lithium metal and the solvent.The interaction between cathode,the deposited Li of anode,and solvent promotes the temperature of the battery to rise slowly.When the temperature of the battery reaches more than 60℃,the reaction between lithium metal and solvent is accelerated.After the temperature rises rapidly to the melting point of the separator,it triggers the thermal runaway of the battery due to the short circuit of the battery.Fengling Yun Shiyang Liu Min Gao Xuanxuan Bi Weijia Zhao Zenghua Chang Minjuan Yuan Jingjing Li Xueling Shen Xiaopeng Qi Ling Tang Yi Cui Yanyan Fang Lihao Guo Shangqian Zhao Xiangjun Zhang Shigang Lu 2023Journal of Energy Chemistry2023,,4:0
14Bi-FoRe:an efficient bidirectional knockin strategy to generate pairwise conditional alleles with fluorescent indicators显示文摘Gene expression labeling and conditional manipulation of gene function are important for elaborate dissection of gene function.However,contemporary generation of pairwise dual-function knockin alleles to achieve both conditional and geno-tagging effects with a single donor has not been reported.Here we first developed a strategy based on a flipping donor named FoRe to generate conditional knockout alleles coupled with fluorescent allele-labeling through NHEJ-mediated unidirectional targeted insertion in zebrafish facilitated by the CRISPR/Cas system.We demonstrated the feasibility of this strategy at sox10 and isl1 loci,and successfully achieved Cre-induced conditional knockout of target gene function and simultaneous switch of the fluorescent reporter,allowing generation of genetic mosaics for lineage tracing.We then improved the donor design enabling efficient one-step bidirectional knockin to generate paired positive and negative conditional alleles,both tagged with two different fluorescent reporters.By introducing Cre recombinase,these alleles could be used to achieve both conditional knockout and conditional gene restoration in parallel;furthermore,differential fluorescent labeling of the positive and negative alleles enables simple,early and efficient realtime discrimination of individual live embryos bearing different genotypes prior to the emergence of morphologically visible phenotypes.We named our improved donor as Bi-FoRe and demonstrated its feasibility at the sox10 locus.Furthermore,we eliminated the undesirable bacterial backbone in the donor using minicircle DNA technology.Our system could easily be expanded for other applications or to other organisms,and coupling fluorescent labeling of gene expression and conditional manipulation of gene function will provide unique opportunities to fully reveal the power of emerging single-cell sequencing technologies.Bingzhou Han Yage Zhang Xuetong Bi Yang Zhou Christopher JKrueger Xinli Hu Zuoyan Zhu Xiangjun Tong Bo Zhang 2021Protein & Cell2021,12,1:0
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