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| 1 | Challenges and recent progress in thermal management with heat pipes for lithium-ion power batteries in electric vehicles显示文摘Electric vehicles(EVs)are globally undergoing rapid developments,and have great potentials to replace the traditional vehicles based on fossil fuels.Power-type lithium-ion batteries(LIBs)have been widely used for EVs,owing to high power densities,good charge/discharge stability,and long cycle life.The driving ranges and acceleration performances are gaining increasing concerns from customers,which depend highly on the power level of LIBs.With the increase in power outputs,rising heat generation significantly affects the battery performances,and in particular operation safety.Meanwhile,the cold-start performance is still an intractable problem under extreme conditions.These challenges put forward higher requirements for a dedicated battery thermal management system(BTMS).Compared to traditional BTMSs in EVs,the heat pipe-based BTMS has great application prospects owing to its compact structure,flexibility,low cost,and especially high thermal conductivity.Encompassing this topic,this review first introduces heat generation phenomena and temperature characteristics of LIBs.Multiple abuse conditions and thermal runaway issues are described afterward.Typical cooling and preheating methods for designing a BTMS are also discussed.More emphasis on this review is put on the use of various heat pipes for BTMSs to enhance the thermal performances of LIBs.For lack of wide application in actual EVs,more efforts should be made to extend the use of heat pipes for constructing an energy-efficient,cost-effective,and reliable BTMS to improve the performances and safety of EVs. | HUANG Yao TANG Yong YUAN Wei FANG GuoYun YANG Yang ZHANG XiaoQing WU YaoPeng YUAN YuHang WANG Chun LI JinGuang | 2021 | Science China(Technological Sciences)2021,64,5: | 10 |
| 2 | RING finger protein RGLG1 and RGLG2 negatively modulate MAPKKK18 mediated drought stress tolerance in Arabidopsis显示文摘Mitogen activated protein kinase kinase kinase 18(MAPKKK18)mediated signaling cascade plays important roles in Arabidopsis drought stress tolerance.However,the post-translational modulation patterns of MAPKKK18 are not characterized.In this study,we found that the protein level of MAPKKK18 was tightly controlled by the 26 S proteasome.Ubiquitin ligases RGLG1 and RGLG2 ubiquitinated MAPKKK18 at lysine residue K32 and K154,and promoted its degradation.Deletion of RGLG1 and RGLG2 stabilized MAPKKK18 and further enhanced the drought stress tolerance of MAPKKK18-overexpression plants.Our data demonstrate that RGLG1 and RGLG2 negatively regulate MAPKKK18-mediated drought stress tolerance in Arabidopsis. | Jiayi Yu Lu Kang Yuanyuan Li Changai Wu Chengchao Zheng Pei Liu Jinguang Huang | 2021 | Journal of Integrative Plant Biology2021,63,3: | 4 |
| 3 | Crystalline behaviors and phase transition during the manufacture of fine denier PA6 fibers显示文摘Recently we have successfully produced fine denier PA6 fibers by using additives containing lanthanide compounds.Meanwhile,crystallization and phase transition of PA6 fibers during spinning and drawing processes were investigated.During the spinning process,β phase crystal could be obtained in as-spun PA6 fibers which were produced with relatively high melt draw ratio,while γ phase crystal predominated when the melt draw ratio was relatively low.β phase crystal,whose behaviors are similar with those of γ phase by FT-IR and XRD characterization,could be transformed to α form easily when PA6 fibers are immersed in boiling water.However,γ phase crystal of PA6 remains unchanged in boiling water.Thus,β and γ phase crystals of PA6 can be differentiated by the crystalline behaviors of PA6 fibers after treatment in boiling water.Further experiments demonstrate that the β phase can also be produced during a drawing process where a phase transformation from γ to α occurs.In other words,β phase may act as an intermediate state during the phase transformation. | ZHANG ChengFeng LIU YuHai LIU ShaoXuan LI HuiZhen HUANG Kun PAN QingHua HUA XiaoHui HAO ChaoWei MA QingFang LV ChangYou LI WeiHong YANG ZhanLan ZHAO Ying WANG DuJin LAI GuoQiao JIANG JianXiong XU YiZhuang WU JinGuang | 2009 | Science China Chemistry2009,52,11: | 4 |
| 4 | Regulation of the stability and ABA import activity of NRT1.2/NPF4.6 by CEPR2-mediated phosphorylation in Arabidopsis显示文摘Abscisic acid(ABA)transport plays an important role in systemic plant responses to environmental factors.However,it remains largely unclear about the precise regulation of ABA transporters in plants.In this study,we show that the C-terminally encoded peptide receptor 2(CEPR2)directly interacts with the ABA transporter NRT1.2/NPF4.6.Genetic and phenotypic analyses revealed that NRT1.2/NPF4.6 positively regulates ABA response and that NRT1.2/NPF4.6 is epistatically and negatively regulated by CEPR2.Further biochemical assays demonstrated that CEPR2 phosphorylates NRT1.2/NPF4.6 at serine 292 to promote its degradation under normal conditions.However,ABA treatment and non-phosphorylation at serine 292 prevented the degradation of NRT1.2/NPF4.6,indicating that ABA inhibits the phosphorylation of this residue.Transport assays in yeast and Xenopus oocytes revealed that non-phosphorylated NRT1.2/NPF4.6 had high levels of ABA import activity,whereas phosphorylated NRT1.2/NPF4.6 did not import ABA.Analyses of complemented nrt1.2 mutants that mimicked non-phosphorylated and phosphorylated NRT1.2/NPF4.6 confirmed that non-phosphorylated NRT1.2S292A had high stability and ABA import activity in planta.Additional experiments showed that NRT1.2/NPF4.6 was degraded via the 26S proteasome and vacuolar degradation pathways.Furthermore,we found that three E2 ubiquitin-conjugating enzymes,UBC32,UBC33,and UBC34,interact with NRT1.2/NPF4.6 in the endoplasmic reticulum and mediate its ubiquitination.NRT1.2/NPF4.6 is epistatically and negatively regulated by UBC32,UBC33,and UBC34 inplanta.Taken together,these results suggest that the stability and ABA import activity of NRT1.2/NPF4.6 are precisely regulated by its phosphorylation and degradation in response to environmental stress. | Lei Zhang Zipeng Yu Yang Xu Miao Yu Yue Ren Shizhong Zhang Guodong Yang Jinguang Huang Kang Yan Chengchao Zheng Changai Wu | 2021 | Molecular Plant2021,14,4: | 2 |
| 5 | Multiple Ontologies Fu sion Mechanism Based on Complex Semantic Mapping in Mediator显示文摘 | Gu Jinguang Huang Yi Zhou Yi | 2006 | Journal of Wuhan University2006,52,1: | 1 |
| 6 | Regulation of the stability and ABA import activity of NRT1.2/NPF4.6 by CEPR2-mediated phosphorylation in Arabidopsis显示文摘(Molecular Plant 14,633–646;April 52021)In Figure 1D in our original manuscript,we demonstrated by the mating-based split ubiquitin system(MbSUS)assay that the functional domains of CEPR2 interact with the loop region of NRT1.2/NPF4.6(NRT1.2loop,aa 232-346).However,the sub-image of-WLU in Figure 1D was mistakenly assembled. | Lei Zhang Zipeng Yu Yang Xu Miao Yu Yue Ren Shizhong Zhang Guodong Yang Jinguang Huang Kang Yan Chengchao Zheng Changai Wu | 2022 | Molecular Plant2022,15,10: | 1 |
| 7 | Tailoring biochar by PHP towards the oxygenated functional groups(OFGs)-rich surface to improve adsorption performance显示文摘In this work,a modification method of H_(3)PO_(4)plus H_(2)O_(2)(PHP)was introduced to targetedly form abundant oxygenated functional groups(OFGs)on biochar,and methylene blue(MB)was employed as a model pollutant for adsorption to reflect the modification performance.Results indicated that parent biochars,especially derived from lower temperatures,substantially underwent oxidative modification by PHP,and OFGs were targetedly produced.Correspondingly,approximately 21.5-fold MB adsorption capacity was achieved by PHP-modified biochar comparing with its parent biochar.To evaluate the compatibility of PHP-modification,coefficient of variation(CV)based on MB adsorption capacity by the biochar from various precursors was calculated,in which the CV of PHP-modified biochars was 0.0038 comparing to0.64 of the corresponding parent biochars.These results suggested that the PHP method displayed the excellent feedstock compatibility on biochar modification.The maximum MB adsorption capacity was454.1 mg/g when the H_(3)PO_(4)and H_(2)O_(2)fraction in PHP were 65.2%and 7.0%;the modification was further intensified by promoting temperature and duration.Besides,average 94.5%H_(3)PO_(4)was recovered after 10-batch modification,implying 1.0 kg H_(3)PO_(4)(85%)in PHP can maximally modify 2.37 kg biochar.Overall,this work offered a novel method to tailor biochar towards OFGs-rich surface for efficient adsorption. | Xinyue Xiong Zhanglin Liu Li Zhao Mei Huang Lichun Dai Dong Tian Jianmei Zou Yongmei Zeng Jinguang Hu Fei Shen | 2022 | Chinese Chemical Letters2022,33,6: | 1 |
| 8 | Dual-functional marigold-like Zn_(x)Cd_(1-x)S homojunction for selective glucose photoreforming with remarkable H_(2)coproduction显示文摘The global commitment to pivoting to sustainable energy and products calls for technology development to utilize solar energy for hydrogen(H_(2))and value-added chemicals production by biomass photoreforming.Herein,a novel dual-functional marigold-like Zn_(x)Cd_(1-x)S homojunction has been the production of lactic acid with high-yield and H_(2)with high-efficiency by selective glucose photoreforming.The optimized Zn_(0.3)Cd_(0.7)S exhibits outstanding H_(2)generation(13.64 mmol h^(-1)g^(-1)),glucose conversion(96.40%),and lactic acid yield(76.80%),over 272.80 and 19.21 times higher than that of bare ZnS(0.05 mmol h^(-1)g^(-1))and CdS(0.71 mmol h^(-1)g^(-1))in H_(2)generation,respectively.The marigold-like morphology provides abundant active sites and sufficient substrates accessibility for the photocatalyst,while the specific role of the homojunction formed by hexagonal wurtzite(WZ)and cubic zinc blende(ZB)in photoreforming biomass has been demonstrated by density functional theory(DFT)calculations.Glucose is converted to lactic acid on the WZ surface of Zn_(0.3)Cd_(0.7)S via the photoactive species·O_(2)^(-),while the H_(2)is evolved from protons(H^(+))in H_(2)O on the ZB surface of Zn_(0.3)Cd_(0.7)S.This work paves a promising road for the production of sustainable energy and products by integrating photocatalysis and biorefine. | Fuyan Kang Cai Shi Yeling Zhu Malin Eqi Junming Shi Min Teng Zhanhua Huang Chuanling Si Feng Jiang Jinguang Hu | 2023 | Journal of Energy Chemistry2023,,4: | 1 |
| 9 | GhDREB1 enhances abiotic stress tolerance, delays GA-mediated development and represses cytokinin signaling in transgenic Arabidopsis显示文摘 | Huang Jinguang Yang Mei Liu Pei | 2009 | Plant Cell Environment2009,32,8: | 1 |
| 10 | Theoretical model for fiber-reinforced polymer-confined concrete 显示文摘 | Teng Jinguang Huang Y L Lam L | 2007 | Journal of Composites for Construction2007,11,2: | 1 |
| 11 | The Brassicaceae-specific secreted peptides,STMPs,function in plant growth and pathogen defense显示文摘Low molecular weight secreted peptides have recently been shown to affect multiple aspects of plant growth,development,and defense responses.Here,we performed stepwise BLAST filtering to identify unannotated peptides from the Arabidopsis thaliana protein database and uncovered a novel secreted peptide family,secreted transmembrane peptides(STMPs).These low molecular weight peptides,which consist of an N-terminal signal peptide and a transmembrane domain,were primarily localized to extracellular compartments but were also detected in the endomembrane system of the secretory pathway,including the endoplasmic reticulum and Golgi.Comprehensive bioinformatics analysis identified 10 STMP family members that are specific to the Brassicaceae family.Brassicaceae plants showed dramatically inhibited root growth uponexposure to chemically synthesized STMP1 and STMP2.Arabidopsis overexpressing STMP1,2,4,6,or 10 exhibited severely arrested growth,suggesting that STMPs are involved in regulating plant growth and development.In addition,in vitro bioassays demonstrated that STMP1,STMP2,and STMP10 have antibacterial effects against Pseudomonas syringae pv.tomato DC3000,Ralstonia solanacearum,Bacillus subtilis,and Agrobacterium tumefaciens,demonstrating that STMPs are antimicrobial peptides.These findings suggest that STMP family members play important roles in various developmental events and pathogen defense responses in Brassicaceae plants. | Zipeng Yu Yang Xu Lifei Zhu Lei Zhang Lin Liu Di Zhang Dandan Li Changai Wu Jinguang Huang Guodong Yang Kang Yan Shizhong Zhang Chengchao Zheng | 2020 | Journal of Integrative Plant Biology2020,62,4: | 1 |
| 12 | Tyrosylprotein sulfotransferase suppresses ABA signaling via sulfation of SnRK2.2/2.3/2.6显示文摘Phytohormone abscisic acid(ABA)plays vital roles in stress tolerance,while long-term overactivation of ABA signaling suppresses plant growth and development.However,the braking mechanism of ABA responses is not clear.Protein tyrosine sulfation catalyzed by tyrosylprotein sulfotransferase(TPST)is a critical post-translational modification.Through genetic screening,we identified a tpst mutant in Arabidopsis that was hypersensitive to ABA.In-depth analysis revealed that TPST could interact with and sulfate SnRK2.2/2.3/2.6,which accelerated their degradation and weakened the ABA signaling.Taken together,these findings uncovered a novel mechanism of desensitizing ABA responses via protein sulfation. | Jun Wang Chunyan Wang Tianrun Wang Shizhong Zhang Kang Yan Guodong Yang Changai Wu Chengchao Zheng Jinguang Huang | 2023 | Journal of Integrative Plant Biology2023,65,8: | 0 |
| 13 | Semantic Representation of Evidence-Based Medical Guidelines and Its Use Cases显示文摘Semantic representation of evidence-based medical guidelines provides the support for the data inter-operability and has been found many applications in the medical domain. In this paper, we describe a semantic representation approach of evidence-based medical guidelines, which is based on the Semantic Web Technology standards. We discuss several use cases of that semantic representation of evidence-based medical guideline, and show that they are potentially useful for medical applications. | HU Qing HUANG Zhisheng GU Jinguang | 2015 | Wuhan University Journal of Natural Sciences2015,20,5: | 0 |
| 14 | Semantic Query Mechanism on Peer to Peer XML-Based Information Systems显示文摘To enable accessing web information at semantic level, this paper develops a semantic query rewriting mechanism on peer to peer XISs with complex ontology mapping technology. It discusses the patterns of complex ontology mappings at first, and the ontology-based query mechanism in peer to peer environment. The extension of XML query algebra and XML query rewriting mechanism are dissussed in detail. | JIANG Min HUANG Yi GU Jinguang HE Guiming | 2006 | Wuhan University Journal of Natural Sciences2006,11,3: | 0 |
| 15 | Function identification of Md TIR1 in apple root growth benefited from the predicted Md PPI network显示文摘Protein–protein interaction(PPI)network analysis is an effective method to identify key proteins during plant development,especially in species for which basic molecular research is lacking,such as apple(Malus domestica).Here,an MdPPI network containing 30806 PPIs was inferred in apple and its quality and reliability were rigorously verified.Subsequently,a rootgrowth subnetwork was extracted to screen for critical proteins in root growth.Because hormone-related proteins occupied the largest proportion of critical proteins,a hormonerelated sub-subnetwork was further extracted from the root-growth subnetwork.Among these proteins,auxin-related M.domestica TRANSPORT INHIBITOR RESISTANT 1(MdTIR1)served as the central,high-degree node,implying that this protein exerts essential roles in root growth.Furthermore,transgenic apple roots overexpressing an MdTIR1 transgene displayed increased primary root elongation.Expression analysis showed that MdTIR1 significantly upregulated auxin-responsive genes in apple roots,indicating that it mediates root growth in an auxin-dependent manner.Further experimental validation revealed that MdTIR1 interacted with and accelerated the degradation of MdIAA28,MdIAA43,andMdIAA46.Thus,MdTIR1-mediated degradation of MdIAAs is critical in auxin signal transduction and root growth regulation in apple.Moreover,our network analysis and high-degree node screening provide a novel research technique for more generally characterizing molecular mechanisms. | Lin Liu Zipeng Yu Yang Xu Cheng Guo Lei Zhang Changai Wu Guodong Yang Jinguang Huang Kang Yan Huairui Shu Chengchao Zheng Shizhong Zhang | 2021 | Journal of Integrative Plant Biology2021,63,4: | 0 |
| 16 | DEMETHYLATION REGULATOR 1 regulates DNA demethylation of the nuclear and mitochondrial genomes显示文摘Active DNA demethylation effectively modulates gene expression during plant development and in response to stress.However,little is known about the upstream regulatory factors that regulate DNA demethylation.We determined that the demethylation regulator 1(demr1)mutant exhibits a distinct DNA methylation profile at selected loci queried by methylation-sensitive polymerase chain reaction and globally based on whole-genome bisulfite sequencing.Notably,the transcript levels of the DNA demethylase gene REPRESSOR OF SILENCING 1(ROS1)were lower in the demr1 mutant.We established that DEMR1 directly binds to the ROS1 promoter in vivo and in vitro,and the methylation level in the DNA methylation monitoring sequence of ROS1 promoter decreased by 60%in the demr1 mutant.About 40%of the hyper-differentially methylated regions(DMRs)in the demr1 mutant were shared with the ros1-4 mutant.Genetic analysis indicated that DEMR1 acts upstream of ROS1 to positively regulate abscisic acid(ABA)signaling during seed germination and seedling establishment stages.Surprisingly,the loss of DEMR1 function also caused a rise in methylation levels of the mitochondrial genome,impaired mitochondrial structure and an early flowering phenotype.Together,our results show that DEMR1 is a novel regulator of DNA demethylation of both the nuclear and mitochondrial genomes in response to ABA and plant development in Arabidopsis. | Zhen Wang Hao Zheng Jinguang Huang Guodong Yang Kang Yan Shizhong Zhang Changai Wu Chengchao Zheng | 2022 | Journal of Integrative Plant Biology2022,64,12: | 0 |
| 17 | An RDF Data Set Quality Assessment Mechanism for Decentralized Systems显示文摘With the rapid growth of the linked data on the Web,the quality assessment of the RDF data set becomes particularly important,especially for the quality and accessibility of the linked data.In most cases,RDF data sets are shared online,leading to a high maintenance cost for the quality assessment.This also potentially pollutes Internet data.Recently blockchain technology has shown the potential in many applications.Using the blockchain storage quality assessment results can reduce the centralization of the authority,and the quality assessment results have characteristics such as non-tampering.To this end,we propose an RDF data quality assessment model in a decentralized environment,pointing out a new dimension of RDF data quality.We use the blockchain to record the data quality assessment results and design a detailed update strategy for the quality assessment results.We have implemented a system DCQA to test and verify the feasibility of the quality assessment model.The proposed method can provide users with better cost-effective results when knowledge is independently protected. | Li Huang Zhenzhen Liu Fangfang Xu Jinguang Gu | 2020 | Data Intelligence2020,2,4: | 0 |