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41篇 您的检索式:作者名="LIU Yuanjun"
    题名 作者 年代 出处 被引量
1Double-Edge Intelligent Integrated Satellite Terrestrial Networks显示文摘The efficient integration of satellite and terrestrial networks has become an important component for 6 G wireless architectures to provide highly reliable and secure connectivity over a wide geographical area.As the satellite and cellular networks are developed separately these years,the integrated network should synergize the communication,storage,computation capabilities of both sides towards an intelligent system more than mere consideration of coexistence.This has motivated us to develop double-edge intelligent integrated satellite and terrestrial networks(DILIGENT).Leveraging the boost development of multi-access edge computing(MEC)technology and artificial intelligence(AI),the framework is entitled with the systematic learning and adaptive network management of satellite and cellular networks.In this article,we provide a brief review of the state-of-art contributions from the perspective of academic research and standardization.Then we present the overall design of the proposed DILIGENT architecture,where the advantages are discussed and summarized.Strategies of task offloading,content caching and distribution are presented.Numerical results show that the proposed network architecture outperforms the existing integrated networks.Jiaxin Zhang Xing Zhang Peng Wang Liangjingrong Liu Yuanjun Wang 2020China Communications2020,17,9:9
2Effect of size and crystalline phase of TiO2 nanotubes on cell behaviors: A high throughput study using gradient TiO2 nanotubes显示文摘The research of TiO2 nanotubes(TNTs)in the field of biomedicine has been increasingly active.However,given the diversity of the nanoscale dimension and controversial reports,our understanding of the structure-property relationships of TNTs is not yet complete.In this paper,gradient TNTs with a wide diameter range of 20-350 nm were achieved by bipolar electrochemistry and utilized for a thorough high-throughput study of the effect of nanotube dimension and crystalline phase on protein adsorption and cell behaviors.Results indicated that protein adsorption escalated with nanotube dimension whereas cell proliferation and differentiation are preferred on small diameter(<70 nm)nanotubes.Large diameter anatase nanotubes had higher adsorption of serum proteins than as-prepared ones.But only as-prepared small diameter nanotubes presented slightly higher cell proliferation than corresponding annealed nanotubes whereas there was no discernible difference between as-prepared and annealed nanotubes on cell differentiation for the entire gradient.Those findings replenish previous research about how cell responses to TNTs with a wide diameter range and provide scientific guidance for the optimal design of biomedical materials.Yanran Li Si Wang Yuanjun Dong Ping Mu Yun Yang Xiangyang Liu Changjian Lin Qiaoling Huang 2020Bioactive Materials2020,5,4:3
3Zephyranthes-like Co2NiSe4 arrays grown on 3D porous carbon frame-work as electrodes for advanced supercapacitors and sodium-ion batteries显示文摘Developing suitable electrode materials for electrochemical energy storage devices by biomorph assisted design has become a fascinating topic due to the fantastic properties derived from bio-architectures.Herein,zephyranthes-like Co_(2)NiSe_(4)arrays grown on butterfly wings derived three-dimensional(3D)carbon framework(Z-Co_(2)NiSe_(4)/BWC)is fabricated via hydrothermal assembly and further conversion method.Benefiting from its unique structure and multi-components,the obtained Z-Co_(2)NiSe_(4)/BWC electrode for supercapacitor delivers an excellent specific capacitance of 2,280 F·g^(-1)at 1 A·g^(-1).Impressively,the constructed asymmetric supercapacitor using Co_(2)NiSe_(4)/BWC as positive electrode and activated butterfly wings carbon as negative electrode acquires a high energy density of 42.9 Wh·kg^(-1)at a power density of 800 W·kg^(-1)with robust stability of 94.6%capacitance retention at 10 A·g^(-1)after 5,000 cycles.Moreover,the Z-Co_(2)NiSe_(4)/BWC as anode for sodium-ion batteries exhibits a high specific capacity of 568 mAh·g^(-1)at 0.1 A·g^(-1)and high cycling stability(maintaining 80.1%of the second cycle after 100 cycles).The outstanding electrochemical performances are ascribed to that the synergistic effect of bimetallic selenides and N-doped carbon improves electrochemical activities and conductivity.One-dimensional(1D)nanoneedles grown on 3D porous framework increase the exposure of redox-active sites,endow adequate transmission channels of electrons/ions,and guarantee stability of the electrode during charge/discharge processes.This study will shed light on the avenue towards extending such nanohybrids to excellent energy storage applications.Yanchun Xue Xingmei Guo Mengrong Wu Jiale Chen Mengting Duan Jing Shi Junhao Zhang Fu Cao Yuanjun Liu Qinghong Kong 2021Nano Research2021,14,10:3
4Structural properties of GaN(0001) epitaxial layers revealed by high resolution X-ray diffraction显示文摘High-resolution X-ray diffraction has been used to analyze GaN(0001) epitaxial layers on sapphire substrates. Several structural properties of GaN, including the lattice constants, strains, and dislocation densities are revealed by the technique of X-ray dffraction (XRD). Lattice constants calculated from the omega/2theta scan are c=0.5185 nm and a=0.3157 nm. Also, the in-plane strain is -1.003%, while out of the plane, the epitaxial film is almost relaxed. Several methods are used to deduce the mosaicity and dislocation density of GaN, showing that the edge type dislocations are the overwhelming majority.XIE ZiLi 1,2,3, ZHOU YuanJun 1 , SONG LiHong 1,2 , LIU Bin 1 , HUA XueMei 1,2 , Xiu XiangQian 1 , ZHANG Rong 1,2,3 & ZHENG YouDou 1,2,3 1 JiangSu Provincial Key Laboratory of Advanced Photonic and Electronic Materials and Department of Physics, Nanjing University, Nanjing 210093, China 2 Nanjing National Laboratory of Microstructures, Nanjing 210093, China 3 NJU-Yangzhou Institute of Opto-electronics, Yangzhou, 225001, China 2010Science China(Physics,Mechanics & Astronomy)2010,53,1:3
5Intrinsic Peroxidase-like Activity of Porous CuO Micro-/nanostructures with Clean Surface显示文摘Porous CuO micro-/nanostructures with clean surface,prepared through Cu_(2)(OH)_(2)CO_(3) precursor followed by calcination in air,were proven to be an effective peroxidase mimic.They can quickly catalyze oxidation of the peroxidase substrate 3,3',5,5'-tetramethylbenzidine(TMB)in the presence of H_(2)O_(2),producing a blue color.The obtained porous CuO micro-/nanostructure have potential application in wastewater treatment.The apparent steady-state kinetic parameter was studied with TMB as the substrate.In addition,the potential application of the porous CuO in wastewater treatment was demonstrated with phenol-containing water as an example.Such investigation not only confirms the intrinsic peroxidase-like activity of micro-/nanostructured CuO,but also suggests its potential application in wastewater treatment.Yuanjun Liu Guoxing Zhu Chunlin Bao Aihua Yuan Xiaoping Shen 2014Chinese Journal of Chemistry2014,32,2:2
6Transcriptome sequencing analysis for the identification of stable lncRNAs associated with bovine Staphylococcus aureus mastitis显示文摘Background:Staphylococcus aureus(S.aureus)mastitis is one of the most difficult diseases to treat in lactating dairy cows worldwide.S.aureus with different lineages leads to different host immune responses.Long non-coding RNAs(lncRNAs)are reported to be widely involved in the progress of inflammation.However,no research has identified stable lncRNAs among different S.aureus strain infections.In addition,folic acid(FA)can effectively reduce inflammation,and whether the inflammatory response caused by S.aureus can be reduced by FA remains to be explored.Methods:lncRNA transcripts were identified from Holstein mammary gland tissues infected with different concentrations of S.aureus(in vivo)and mammary alveolar cells(Mac-T cells,in vitro)challenged with different S.aureus strains.Differentially expressed(DE)lncRNAs were evaluated,and stable DE lncRNAs were identified in vivo and in vitro.On the basis of the gene sequence conservation and function conservation across species,key lncRNAs with the function of potentially immune regulation were retained for further analysis.The function of FA on inflammation induced by S.aureus challenge was also investigated.Then,the association analysis between these keys lncRNA transcripts and hematological parameters(HPs)was carried out.Lastly,the knockdown and overexpression of the important lncRNA were performed to validate the gene function on the regulation of cell immune response.Results:Linear regression analysis showed a significant correlation between the expression levels of lncRNA shared by mammary tissue and Mac-T cells(P<0.001,R^(2)=0.3517).lncRNAs PRANCR and TNK2-AS1 could be regarded as stable markers associated with bovine S.aureus mastitis.Several HPs could be influenced by SNPs around lncRNAs PRANCR and TNK2-AS1.The results of gene function validation showed PRANCR regulates the mRNA expression of SELPLG and ITGB2 within the S.aureus infection pathway and the Mac-T cells apoptosis.In addition,FA regulated the expression change of DE lncRNA involved in toxin metabolism and inflammation to fight against S.aureus infection.Conclusions:The remarkable association between SNPs around these two lncRNAs and partial HP indicates the potentially important role of PRANCR and TNK2-AS1 in immune regulation.Stable DE lncRNAs PRANCR and TNK2-AS1 can be regarded as potential targets for the prevention of bovine S.aureus mastitis.FA supplementation can reduce the negative effect of S.aureus challenge by regulating the expression of lncRNAs.Siyuan Mi Yongjie Tang Gerile Dari Yuanjun Shi Jinning Zhang Hailiang Zhang Xueqin Liu Yibing Liu Usman Tahir Ying Yu 2022Journal of Animal Science and Biotechnology2022,13,2:2
7A channel-confined strategy for synthesizing CoN-CoO_(x)/C as efficient oxygen reduction electrocatalyst for advanced zinc-air batteries显示文摘Designing hybrid transition metal compounds with optimized electronic structure and firmly dispersing them on a matrix to avoid aggregation and shedding is of great significance for achieving high electrocatalytic performances.Herein,an adsorption-complexation-calcination strategy based on channel confining effect is explored to obtain CoN-CoO_(x)hybrid nanoparticles uniformly dispersed in mesoporous carbon.The CoN-CoO_(x)/C composite exhibits excellent electrocatalytic behavior for oxygen reduction reaction(ORR).The half-wave potential and durability are comparable or superior to those of Pt/C.When applying as cathode catalyst for a primary zinc-air battery,the open-circuit voltage and peak power density reach up to 1.394 V and 109.8 mW·cm^(−2),respectively.A high gravimetric energy density of 950.3 Wh·kgZn^(−1) is delivered at 10 mA·cm^(−2) with good rate capability and stability.Density functional theory(DFT)calculation demonstrates the favorable ORR intermediate adsorbability and metallic characteristics of CoN grains with oxide hybridization to optimize the electronic structure.This work provides a facile adjustable approach for obtaining highly dispersed nanoparticles with controllable hybrid composition on a substrate,which is important for future design and optimization of high-performance electrocatalysts.Xingmei Guo Wei Zhang Jing Shi Mengting Duan Shanjing Liu Junhao Zhang Yuanjun Liu Shenglin Xiong Qinghong Kong 2022Nano Research2022,15,3:1
8Stability criteria for constant power loads with multistage LC filters显示文摘Liu Xinbo Zhou Yuanjun Zhang Wei 2011IEEE Transactions on Vehicular Technology2011,60,5:1
9Enhanced gas sensing performance of Co-doped ZnO hierarchical microspheres to 1,2-dichloroethane 显示文摘ZHU Guoxing XU Huan LIU Yuanjun 2012Sensors and Ac-tuators B:Chemical2012,16,:1
10Impacts of land use and plant characteristics on dried soil layers in different climatic regions on the Loess Plateau of China显示文摘Yunqiang Wang Ming’an Shao Yuanjun Zhu Zhipeng Liu 2010Agricultural and Forest Meteorology2010,,4:1
11Microstrueture and strengthening mechanisms of molybdenum alloy wires doped with lanthanum oxide particles 显示文摘Zhang Guojun Liu Gang Sun Yuanjun 2009Journal of Refractory Metals and Hard Materials2009,27,:1
12A Survey of 3D Model Retrieval and Mining System显示文摘Liu Wei He Yuanjun 2007Journal of Computational Information Systems2007,3,3:1
13Representation and retrieval of 3D CAD models in parts library显示文摘Liu Wei He Yuanjun 2008The International Journal of Ad- vanced Manufacturing Technology2008,,910:1
14Photochemical deposition of Ag nanocrystals on hierarchical ZnO micro- spheres and their enhanced gas-sensing properties显示文摘Zhu Guoxing Liu Yuanjun Xu Huan 2012Cryst Eng Comm2012,14,:1
15The genomic and bulked segregant analysis of Curcuma alismatifolia revealed its diverse bract pigmentation显示文摘Compared with most flowers where the showy part comprises specialized leaves(petals)directly subtending the reproductive structures,most Zingiberaceae species produce showy“flowers”through modifications of leaves(bracts)subtending the true flowers throughout an inflorescence.Curcuma alismatifolia,belonging to the Zingiberaceae family,a plant species originating from Southeast Asia,has become increasingly popular in the flower market worldwide because of its varied and esthetically pleasing bracts produced in different cultivars.Here,we present the chromosome-scale genome assembly of C.alismatifolia“Chiang Mai Pink”and explore the underlying mechanisms of bract pigmentation.Comparative genomic analysis revealed C.alismatifolia contains a residual signal of whole-genome duplication.Duplicated genes,including pigment-related genes,exhibit functional and structural differentiation resulting in diverse bract colors among C.alismatifolia cultivars.In addition,we identified the key genes that produce different colored bracts in C.alismatifolia,such as F3′5'H,DFR,ANS and several transcription factors for anthocyanin synthesis,as well as chlH and CAO in the chlorophyll synthesis pathway by conducting transcriptomic analysis,bulked segregant analysis using both DNA and RNA data,and population genomic analysis.This work provides data for understanding the mechanism of bract pigmentation and will accelerate breeding in developing novel cultivars with richly colored bracts in C.alismatifolia and related species.It is also important to understand the variation in the evolution of the Zingiberaceae family.Xuezhu Liao Yuanjun Ye Xiaoni Zhang Dan Peng Mengmeng Hou Gaofei Fu Jianjun Tan Jianli Zhao Rihong Jiang Yechun Xu Jinmei Liu Jinliang Yang Wusheng Liu Luke RTembrock Genfa Zhu Zhiqiang Wu 2022aBIOTECH2022,3,3:1
16Sericin for Resistance Switching Device with Multilevel Nonvolatile Memory显示文摘Hong Wang Fanben Meng Yurong Cai Liyan Zheng Yuangang Li Yuanjun Liu Yueyue Jiang Xiaotian Wang Xiaodong Chen 2013Adv Mater2013,,38:1
17Treatment outcomes of transcatheter arterial chemoembolization combined with local ablative therapy versus monotherapy in hepatocellular carcinoma: a meta-analysis显示文摘Lili Gu Huiling Liu Linlin Fan Yuanjun Lv Zhuang Cui Yan Luo Yuanyuan Liu Guang Li Changping Li Jun Ma 2014Journal of Cancer Research and Clinical Oncology2014,,2:1
18Hunting Sodium Dendrites in NASICON-BasedSolid-State Electrolytes显示文摘NASICON-(Na superionic conductor-)based solid-state electrolytes(SSEs)are believed to be attracting candidates for solid-state sodium batteries due to their high ionic conductivity and prospectively reliable stability.However,the poor interface compatibility and the formation of Na dendrites inhibit their practical application.Herein,we directly observed the propagation of Na dendrites through NASICON-based Na3.1Zr2Si2.1P0.9O12 SSE for the first time.Moreover,a fluorinated amorphous carbon(FAC)interfacial layer on the ceramic surface was simply developed by in situ carbonization of PVDF to improve the compatibility between Na metal and SSEs.Surprisingly,Na dendrites were effectively suppressed due to the formation of NaF in the interface when molten Na metal contacts with the FAC layer.Benefiting from the optimized interface,both the Na||Na symmetric cells and Na3V2(PO4)3||Na solidstate sodium batteries deliver remarkably electrochemical stability.These results offer benign reference to the maturation of NASICON-based solid-state sodium batteries.Qiangqiang Zhang Yaxiang Lu Weichang Guo Yuanjun Shao Lilu Liu Jiaze Lu Xiaohui Rong Xiaogang Han Hong Li Liquan Chen Yong-Sheng Hu 2021Energy Material Advances2021,,1:1
19Synthesis and Electrochemical Properties of Porous α-Co(OH)2 and Co3O4 Microspheres显示文摘Both α-Co(OH)_2 and Co_3O_4 porous microspheres have been synthesized by the simple solvothermal process as well as subsequent treatment. The morphologies and structures of the as-synthesized products were characterized by X-ray diffraction(XRD), scanning electron microscopy(SEM), transmission electron microscopy(TEM), and X-ray photoelectron spectroscopy(XPS). Both samples have spherical structures consisting of nanosheets, with similar crystallinity. The electrochemical properties of both samples were further investigated. Both samples show excellent electrochemical performances including high specific capacity, good cycling stability and rate capability. All results show that these microspheres exhibit potential applications in energy storage field.Yingying Xu Zhiyuan Liu Di Chen Yuanjun Song Rongming Wang 2017Progress in Natural Science:Materials International2017,27,2:1
20Preparation and lithium storage performances of g-C_(3)N_(4)/Si nanocomposites as anode materials for lithium-ion battery显示文摘As the anode material of lithium-ion battery,silicon-based materials have a high theoretical capacity,but their volume changes greatly in the charging and discharging process.To ameliorate the volume expansion issue of silicobased anode materials,g-C_(3)N_(4)/Si nanocomposites are prepared by using the magnesium thermal reduction technique.It is well known that g-C_(3)N_(4)/Si nanocomposites can not only improve the electronic transmission ability,but also ameliorate the physical properties of the material for adapting the stress and strain caused by the volume expansion of silicon in the lithiation and delithiation process.When g-C_(3)N_(4)/Si electrode is evaluated,the initial discharge capacity of g-C_(3)N_(4)/Si nanocomposites is as high as 1033.3 mAh/g at 0.1 A/g,and its reversible capacity is maintained at 548 mAh/g after 400 cycles.Meanwhile,the improved rate capability is achieved with a relatively high reversible specific capacity of 218 mAh/g at 2.0 A/g.The superior lithium storage performances benefit from the unique g-C_(3)N_(4)/Si nanostructure,which improves electroconductivity,reduces volume expansion,and accelerates lithiumion transmission compared to pure silicon.Zhengxu BIAN Zehua TANG Jinfeng XIE Junhao ZHANG Xingmei GUO Yuanjun LIU Aihua YUAN Feng ZHANG Qinghong KONG 2020Frontiers in Energy2020,14,4:1
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