|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | α-Linolenic acid attenuates doxorubicin-induced cardiotoxicity in rats through suppression of oxidative stress and apoptosis显示文摘Doxorubicin (纪录影片) ,广泛地使用的反肿瘤药,能由氧化应力和房间 apoptosis 产生严重 cardiotoxicity,它限制它的临床的申请。亚麻酸的酸(翼) 被显示了用作一个有势力 cardioprotective 代理人。这研究的目的是在老鼠为这 cardioprotection 在导致纪录影片的 cardiotoxicity 和内在的分子的机制上探索翼的保护的效果。老鼠随机被划分成四个组并且与正常管理了盐,翼(500 梭织,任何一个 CheRs 都不能维持上述的互补功能,考虑到类似于 E 的接受甲基的趋化性蛋白质,建议他们的关键角色。coli。由 microarray 试金示威了,在 L 的 cheR1 的表示。在 28 点有教养的 | Xiaohua Yu Libao Cui Zizhen Zhang Qihui Zhao Shuangjie Li | 2013 | Acta Biochimica et Biophysica Sinica2013,45,10: | 4 |
| 2 | Integrated analysis of multi-tissues lipidome and gut microbiome reveals microbiota-induced shifts on lipid metabolism in pigs显示文摘Lipid metabolism is very important for meat quality in pigs.Accumulating evidence shows that gut microbiota can contribute to this physiological process.However,the gut microbiota that function in lipid metabolism and adipogenesis remains unclear.Here,we compared the characteristics of fat deposition and gut microbial community between Laiwu pigs and Duroc(LandraceYorkshire)(DLY)pigs.Fecal microbiota transplantation(FMT)was performed to determine the possible impact of gut microbiota on lipid metabolism in pigs.An integrated analysis of the gut microbiome and lipidome of the small intestine,plasma,and liver was conducted to investigate the effects of FMT on host lipid metabolism.The comparative analysis of the gut microbiome showed higher abundance of Bacteroidetes(P=0.0018)while lower abundance of Firmicutes(P=0.012)in Laiwu pigs,and the microbial composition can be transferred from Laiwu pigs into DLY pigs.Transmission electron microscope and Oil red-O staining were performed to analyze the effects of FMT on lipid deposition in liver,the main target organ for lipid metabolism.The results showed that FMT significantly increased the number of lipid droplets(P=0.0035)and lipid accumulation(P=0.0026)in liver.Furthermore,integrated multi-tissues lipidome analysis demonstrated that the fatty acyls and glycerophospholipids were significantly increased(P<0.01)in intestine and liver,while glycerolipids and fatty acyls were reduced(P<0.01)in plasma.In the small intestine,FMT increased(P<0.01)the relative abundance of polyketides and prenol lipids but reduced(P<0.01)the saccharolipids.Correlation analysis revealed the potential interactions between microbiota and lipid metabolites.Together,our results indicated that the gut microbiota may regulate the lipid metabolism and enhance the accumulation of lipid droplets in the liver of pigs. | Chunlin Xie Xiaoyan Zhu Baoyang Xu Yaorong Niu Xuelei Zhang Libao Ma Xianghua Yan | 2022 | Animal Nutrition2022,,3: | 2 |
| 3 | All-in-One Deposition to Synergistically Manipulate Perovskite Growth for High-Performance Solar Cell显示文摘Nonradiative recombination losses originating from crystallographic distortions and issues occurring upon interface formation are detrimental for the photovoltaic performance of perovskite solar cells.Herein,we incorporated a series of carbamide molecules(urea,biuret,or triuret)consisting of both Lewis base(-NH2)and Lewis acid(-C=O)groups into the perovskite precursor to simultaneously eliminate the bulk and interface defects.Depending on the different coordination ability with perovskite component,the incorporated molecules can either modify crystallization dynamics allowing for large crystal growth at low temperature(60℃),associate with antisite or undercoordinated ions for defect passivation,or accumulate at the surface as an energy cascade layer to enhance charge transfer,respectively.Synergistic benefits of the above functions can be obtained by rationally optimizing additive combinations in an all-in-one deposition method.As a result,a champion efficiency of 21.6%with prolonged operational stability was achieved in an inverted MAPbI3 perovskite solar cell by combining biuret and triuret additives.The simplified all-in-one fabrication procedure,adaptable to different types of perovskites in terms of pure MAPbI3,mixed perovskite,and all-inorganic perovskite,provides a cost-efficient and reproducible way to obtain high-performance inverted perovskite solar cells. | Yifan Lv Hui Zhang Jinpei Wang Libao Chen Lifang Bian Zhongfu An Zongyao Qian Guoqi Ren Jie Wu Frank Nuesch Wei Huang | 2020 | Research2020,,1: | 2 |
| 4 | Effects of different root zone heating systems on the microclimate and crop development in solar greenhouses显示文摘Heating greenhouse is indispensable for plant development particularly in winter when the air temperature is lower.In that sense,root zone heating is more energy-saving than traditional air heating.The current work was devoted to the study of the effect of two root zone heating systems based on carbon crystal electrothermal film and low temperature hot water pipe on the microclimate and tomato yield in solar greenhouse.And their performance was tested in the coldest period of winter in Yongqing County of Hebei Province.The results showed that the use of root zone heating system can improve the average substrate temperature by 6.8℃.This microclimate improvement had a positive impact on tomato production.The output per square meter has increased by 19%compared to the unheated.It was also noted that the presence of root zone heating leads to a decrease in the development of disease in heated areas.Based on these results,the root zone heating system can be an effective method of improving the environmental temperature of crop plant,which is of great significance for increasing crop yield. | Fen He Jing Tian Liu Wang Yong Hou Fei Qi Yanping Zhang Libao Zhu Zhonghua Li | 2022 | International Journal of Agricultural and Biological Engineering2022,15,6: | 1 |
| 5 | Region-of-interest extraction based on frequency domain analysis and salient region detection for remote sensing image显示文摘 | Libao Zhang Kaina Yang | 2014 | IEEE Letters on Geoscience and Remote Sensing2014,11,5: | 1 |
| 6 | Simulating the strong ground motion of the 2022 MS6.8 Luding,Sichuan,China Earthquake显示文摘Stochastic finite-fault simulations are effective for simulating ground motions and are widely used in engineering to determine the impacts of ground motion and develop relevant predictive equations.In this study,the source,path,and site amplification coefficient of western Sichuan Province,China,and stochastic finite-fault simulations were used to simulate the acceleration time series,Fourier amplitude spectra,and 5%damped response spectra of 28 strong-motion stations with rupture distances within 300 km of the 2022 MS6.8 Luding earthquake.The simulation results of 14 stations at rupture distances of 45-185 km match the observation.However,the simulation results of 3 near-and 6 far-field stations at rupture distances of 12-36 km and 222-286 km,respectively,were obviously deviated from the observations.Simulation results of the near-field stations are larger than the observations at high frequencies(>6 Hz).The discrepancy likely comes from the nonlinear site effect of near-field stations,which reduced the site amplification at high frequencies.Simulation result of the far-field stations is smaller than the observation at frequencies above 1 Hz.As these stations are located close to the Longmenshan Fault Zone(LFZ),thus,we obtained a new quality factor(Q)from data of historical events and stations located around LFZ.Using the new Q value,the discrepancies of the high-frequency simulation results of the far-field stations were corrected.This result indicated that the laterally varying Q values can be used to address the impact of strong crustal lateral heterogeneity on simulation. | Libao Zhang Lei Fu Aiwen Liu Su Chen | 2023 | Earthquake Science2023,36,4: | 1 |
| 7 | Structures and defects of WO 3? x nanorods grown by in-situ heating tungsten filament显示文摘 | Huairuo Zhang Min Feng Fei Liu Libao Liu Hanyuan Chen Hongjun Gao Jianqi Li | 2004 | Chemical Physics Letters2004,,4: | 1 |
| 8 | Simple method for the preparation of highly porous ZnCo 2 O 4 nanotubes with enhanced electrochemical property for supercapacitor显示文摘 | Gang Zhou Jian Zhu Yuejiao Chen Lin Mei Xiaochuan Duan Guanhua Zhang Libao Chen Taihong Wang Bingan Lu | 2014 | Electrochimica Acta2014,,: | 1 |
| 9 | Photoelectrocatalytic oxidation of Cu- 11 -EDTA at TiO2 electrode and simultaneous reco- very ofCu- by electrodeposition 显示文摘 | Zhao Xu Guo Libao Zhang Baofeng | 2013 | Environmental Science and Technology2013,47,9: | 1 |
| 10 | Crosslinked solubilizer enables nitrate-enriched carbonate polymer electrolytes for stable,high-voltage lithium metal batteries显示文摘High-voltage lithium metal batteries(LMBs)have been considered promising next-generation highenergy-density batteries.However,commercial carbonate electrolytes can scarcely be employed in LMBs owing to their poor compatibility with metallic lithium.N,N-dimethylacrylamide(DMAA)-a crosslinkable solubilizer with a high Gutmann donor number-is employed to facilitate the dissolution of insoluble lithium nitrate(LiNO3)in carbonate-based electrolytes and to form gel polymer electrolytes(GPEs)through in situ polymerization.The Lit solvation structure of the GPEs is regulated using LiNO3 and DMAA,which suppresses the decomposition of LiPFe and facilitates the formation of an inorganic-rich solid electrolyte interface.Consequently,the Coulombic efficiency(CE)of the LillCu cell assembled with a GPE increases to 98.5%at room temperature,and the high-voltage LillNCM622 cell achieves a capacity retention of 80.1%with a high CE of 99.5%after 400 cycles.The bifunctional polymer electrolytes are anticipated to pave the way for next-generation high-voltage LMBs. | Chuyang Jing Kuan Dai Dong Liu Wenran Wang Libao Chen Chunxiao Zhang Weifeng Wei | 2024 | Science Bulletin2024,69,2: | 0 |
| 11 | Density functional theory study of B- and Si-doped carbons and their adsorption interactions with sulfur compounds显示文摘Understanding the adsorption interactions between carbon materials and sulfur compounds has far-reaching impacts,in addition to their well-known important role in energy storage and conversion,such as lithium-ion batteries.In this paper,properties of intrinsic B or Si single-atom doped,and B-Si codoped graphene(GR)and graphdiyne(GDY)were investigated by using density functional theory-based calculations,in which the optimal doping configurations were explored for potential applications in adsorbing sulfur compounds.Results showed that both B or Si single-atom doping and B-Si codoping could substantially enhance the electron transport properties of GR and GDY,improving their surface activity.Notably,B and Si atoms displayed synergistic effects for the codoped configurations,where B-Si codoped GR/GDY exhibited much better performance in the adsorption of sulfurcontaining chemicals than single-atom doped systems.In addition,results demonstrated that,after B-Si codoping,the adsorption energy and charge transfer amounts of GDY with sulfur compounds were much larger than those of GR,indicating that B-Si codoped GDY might be a favorable material for more effectively interacting with sulfur reagents. | Peng Guo Hong Zhang Shuliang Dong Libao An | 2024 | Carbon Energy2024,6,2: | 0 |
| 12 | Analysis of faulting destruction and water supply pipeline damage from the first mainshock of the February 6,2023 Türkiye earthquake doublet显示文摘In 2023,two consecutive earthquakes exceeding a magnitude of 7 occurred in Türkiye,causing severe casualties and economic losses.The damage to critical urban infrastructure and building structures,including highways,railroads,and water supply pipelines,was particularly severe in areas where these structures intersected the seismogenic fault.Critical infrastructure projects that traverse active faults are susceptible to the influence of fault movement,pulse velocity,and ground motions.In this study,we used a unique approach to analyze the acceleration records obtained from the seismic station array(9 strong ground motion stations)located along the East Anatolian Fault(the seismogenic fault of the MW7.8 mainshock of the 2023 Türkiye earthquake doublet).The acceleration records were filtered and integrated to obtain the velocity and displacement time histories.We used the results of an on-site investigation,jointly conducted by China Earthquake Administration and Türkiye’s AFAD,to analyze the distribution of PGA,PGV,and PGD recorded by the strong motion array of the East Anatolian Fault.We found that the maximum horizontal PGA in this earthquake was 3.0 g,and the maximum co-seismic surface displacement caused by the East Anatolian Fault rupture was 6.50 m.As the fault rupture propagated southwest,the velocity pulse caused by the directional effect of the rupture increased gradually,with the maximum PGA reaching 162.3 cm/s.We also discussed the seismic safety of critical infrastructure projects traversing active faults,using two case studies of water supply pipelines in Türkiye that were damaged by earthquakes.We used a three-dimensional finite element model of the PE(polyethylene)water pipeline at the Islahiye State Hospital and fault displacement observations obtained through on-site investigation to analyze pipeline failure mechanisms.We further investigated the effect of the fault-crossing angle on seismic safety of a pipeline,based on our analysis and the failure performance of the large-diameter Thames Water pipeline during the 1999 Kocaeli earthquake.The seismic method of buried pipelines crossing the fault was summarized. | Xiaoqing Fan Libao Zhang Juke Wang Yefei Ren Aiwen Liu | 2024 | Earthquake Science2024,37,1: | 0 |
| 13 | High-Performance 3D Li-B-C-Al Alloy Anode and its Twofold Li Electrostripping and Plating Mechanism Revealed by Synchrotron X-Ray Tomography显示文摘The uncontrollable Li electrostripping and plating process that results in dendritic Li growth and huge volume change of Li anode limits the practicality of Li metal batteries(LMBs).To simultaneously address these issues,designing three-dimensional(3D),lithiophilic and mechanically robust electrodes seems to be one of the cost-effective strategies.Herein,a new 3D Li-B-C-Al alloy anode is designed and fabricated.The prepared 3D alloy anode exhibits not only superior lithiophilicity that facilitates uniform Li nucleation and growth but also sufficient mechanical stability that maintains its structural integrity.Superior performance of the prepared 3D alloy is demonstrated through comprehensive electrochemical tests.In addition,non-destructive and 3D synchrotron X-ray computed tomography(SX-CT)technique is employed to investigate the underlying working mechanisms of the prepared alloy anode.A unique twofold Li electrostripping and plating mechanism under different electrochemical cycling conditions is revealed.Lastly,improved performance of the full cells built with the 3D alloy anode and LiNi_(0.8)Co_(0.1)Mn_(0.1)O_(2)(NCM811)cathode corroborate its potential application capability.Overall,the current work not only showcases the superiority of the 3D alloy as potential anode material for LMBs but also provides fundamental insights into its underlying working mechanisms that may further propel its research and development. | Fengcheng Tang Xia Zhang Markus Osenberg Chao Yang Haifeng Huang Andr Hilger Masyuki Uesugi Kentaro Uesug Akihisa Takeuchi Ingo Manke Fu Sun Libao Chen | 2023 | Energy & Environmental Materials2023,6,3: | 0 |
| 14 | Morphological evolution and kinetic enhancement of Li_2Fe_xMn_(1-x)SiO_4/C cathodes for Li-ion battery显示文摘Li_2MnSiO_4-based cathode materials possess reasonable work potentials and high theoretical capacities,while the practical energy/power densities are constrained by their inferior kinetics of Li^+ diffusion.In this work,the Pmn2_1-structure Li_2Fe_xMn_(1-x)SiO_4/C materials were synthesized via a solvothermal method and evaluated as Liion cathode materials,with notable morphological evolutions and tunable crystallographic habits observed after solvothermal process.The Li_2Fe_(0.33)Mn_(0.67)SiO_4/C material delivers an initial reversible capacity of 250.2mAh g^(-1)at 0.1 C(~1.51 Li^+insertion/extraction,1 C=166 mA g^(-1)),excellent high-rate capability(52.2 mAh g^(-1)at 5 C),and good long-term cyclability(64.6%after 196 cycles at 2 C).The enhanced electrochemical properties are attributed to the boosted ion/electron transports induced by preferred morphological and structural characteristics of Li_2Fe_(0.33)Mn_(0.67)SiO_4/C. | Datong Zhang Zhengping Ding Shuai Zhao Ying Yang Yiming Feng Lei Xiao Ran Ji Libao Chen Weifeng Wei | 2018 | Progress in Natural Science:Materials International2018,28,5: | 0 |
| 15 | The F5 gene predicts poor prognosis of patients with gastric cancer by promoting cell migration identified using a weighted gene co-expression network analysis显示文摘Distal gastric cancer(DGC)is a subgroup of gastric cancer(GC),which has different molecular characteristics from proximal gastric cancer(PGC).These differences result in different overall survival(OS)rates;however,data pertaining to the survival rate in PGC or DGC are contradictory.This suggests that the location of GC is not the unique cause of the different survival rates,while the molecular characteristics might be more important factors determining the prognosis of DGC.Therefore,the aim of this study was to discover key prognostic factors in DGC using bioinformatic methods and to explore the potential molecular mechanism.The Cancer Genome Atlas(TCGA)public database was employed to screen data relating to DGC,and we conducted a weighted gene co-expression network analysis(WGCNA)on DGC patient samples to establish co-expression modules.High-weight genes(hub genes)in a dominant color module were identified.In vitro experiments and gene set enrichment analyses(GSEA)were carried out to elucidate the potential molecular mechanism.In this study,139 DGC samples were enrolled to perform a co-expression analysis.According to the correlation between gene modules and clinical characteristics,the royal blue module related to stage M of DGC was screened,and a survival analysis was conducted to show that highcoagulation-factor V(F5)expression was related to the short OS of patients with GC.In vitro experiments confirmed that F5 could promote the migration of GC cells.GSEA suggested that F5 might have affected the prognosis of GC by modulating the activities of the Wnt and/or the TGF-βsignaling pathways.Our results indicated that high F5 expression predicts poor prognosis of patients with DGC,and it functions probably by promoting cell migration through the Wnt and/or the TGF-βsignaling pathways. | MENGYI TANG BOWEN YANG CHUANG ZHANG CHAOXU ZHANG DAN ZANG LIBAO GONG YUNPENG LIU ZHI LI XIUJUAN QU | 2021 | BIOCELL2021,45,4: | 0 |
| 16 | Degradation characteristics of insulation near aluminium foil edges inside dry-type bushing cores under electrothermal compound stress显示文摘Insulation breakdown of dry-type valve-side bushing cores under electrothermal compound stress has become a key factor limiting the safe and stable operation of the converter transformer.Based on slices of the real bushing core,it is observed for the first time that fold,peeling off,and fracture defects exist near the aluminium(Al)foil edge,accompanied by many metal spikes with a curvature radius<4μm.Coupled with a capacitor screen thickness of∼2 mm,an electrical tree model is designed to simulate insulation defects near aluminium foil edges inside dry-type bushing cores,whose insulation degradation characteristics under electrothermal compound stress are investigated accordingly.The results show that high temperature significantly increases the dielectric loss heat energy density and Joule heat energy density,accelerating the insulation degradation near Al foil edges.The parallel crepe paper interface significantly accelerates the growth of electrical trees under AC-superimposed positive DC voltage,while this effect is not significant under AC voltage.As the crepe paper consists of wooden fibres of 10μm diameter,the electrical trees tend to grow along interfaces between fibres and epoxy resin to form“feathery”electrical trees in epoxy resinimpregnated paper samples. | Ming Chen Xuandong Liu Yuhang Shao Gaoyi Shang Qiaogen Zhang Hao Tang Libao Liu | 2022 | High Voltage2022,7,6: | 0 |