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7篇 您的检索式:作者名="Peijie Ma"
    题名 作者 年代 出处 被引量
1Remotely excited Raman optical activity using chiral plasmon propagation in Ag nanowires显示文摘We experimentally investigated remotely excited Raman optical activity(ROA)using propagating surface plasmons in chiral Ag nanowires.Using chiral fmoc-glycyl-glycine-OH(FGGO)molecules,we first studied the local surface plasmon-enhanced ROA.We found that the Raman intensity can be excited by left-and right-circularly polarized lights and that the circular intensity difference(CID)can be significantly enhanced.Second,by selecting vibrational modes with large Raman and ROA intensities that are not influenced by chemical enhancements,we studied remotely excited ROA imaging and the CID of FGGO molecules by propagating a plasmonic waveguide using Ag chiral nanostructures.When laser light was radiated on one of the Ag terminals,the measured CID of the FGG at the other terminal showed little change compared to the local excited CID.Meanwhile,when the laser light was radiated on the Ag nanowires(not on the terminals)and was coupled to the nearby nanoantenna,the CID of the ROA could be manipulated by altering the coupling angle between the Ag nanowires.To directly demonstrate the propagation of ROA along the nanowire and its remote detection,we also measured the remotely excited ROA spectra.Our experimental method has the potential to remotely determine the chirality of molecular structures and the absolute configuration or conformation of a chiral live cell.Mengtao Sun Zhenglong Zhang Peijie Wang Qiang Li Fengcai Ma Hongxing Xu 2013Light(Science & Applications)2013,2,1:7
2Canine ACL reconstruction with an injectable hydroxyapatite/collagen paste for accelerated healing of tendon-bone interface显示文摘Healing of an anterior cruciate ligament(ACL)autologous graft in a bone tunnel occurs through the formation of fibrovascular scar tissue,which is structurally and compositionally inferior to normal fibrocartilaginous insertion and thus may increase the reconstruction failure and the rate of failure recurrence.In this study,an injectable hydroxyapatite/type I collagen(HAp/Col I)paste was developed to construct a suitable local microenvironment to accelerate the healing of bone-tendon interface.Physicochemical characterization demonstrated that the HAp/Col I paste was injectable,uniform and stable.The in vitro cell culture illustrated that the paste could promote MC3T3-E1 cells proliferation and osteogenic expression.The results of a canine ACL reconstruction study showed that the reconstructive ACL had similar texture and color as the native ACL.The average width of the tunnel,total bone volume,bone volume/tissue volume and trabecular number acquired from micro-CT analysis suggested that the healing of tendon-bone interface in experimental group was better than that in control group.The biomechanical test showed the maximal loads in experimental group achieved approximately half of native ACL’s maximal load at 24 weeks.According to histological examination,Sharpey fibers could be observed as early as 12 weeks postoperatively while a typical four-layer transitional structure of insertion site was regenerated at 48 weeks in the experimental group.The injectable HAp/Col I paste provided a biomimetic scaffold and microenvironment for early cell attachment and proliferation,further osteogenic expression and extracellular matrix deposition,and in vivo structural and functional regeneration of the tendon-bone interface.Qingsong Jiang Liren Wang Zhanhong Liu Jinlei Su Yajun Tang Peijie Tan Xiangdong Zhu Kai Zhang Xing Ma Jia Jiang Jinzhong Zhao Hai Lin Xingdong Zhang 2023Bioactive Materials2023,,2:1
3The escape of pedestrians with view radius显示文摘Peijie Ma Binghong Wang 2013Physica A: Statistical Mechanics and its Applications2013,,1:1
4HMGB1 is necessary for the development of lamprey显示文摘High mobility group box protein 1(HMGB1)with a highly conserved structure in chromatin is an abundant nonhistone protein,which is involved in nucleosome folding and assembly,chromatin formation,DNA binding,V(D)J recombination,DNA replication,gene transfer,cell differentiation,cell migration,neurotransmitters,cell death,immune response,and other important processes[1–4].So,it has important biological functions in animals.The function of hmgb1 has been extensively studied in jawed vertebrates but little in lampreys.Lampreys are members of the living agnathans,the most basal group of vertebrates.Lamprey is a considerable model organism in vertebrate evolution and developmental biology because of its special phylogenetic position and critical stage closely related to other animals.Many aspects of the hmgb1 in lampreys have not been revealed,such as evolution,distribution,and role.Therefore,in this paper,the evolution of hmgb1 was carried out,and the function of hmgb1 in lampreys was investigated by the morpholine antisense oligonucleotide(MO)technique.The data provide the foundation for the study of origins,evolution,and the function of hmgb1 in a jawless vertebrate.Linking evolution to function can shed more light on the role of the hmgb1 gene involved in development.Jingjing Lu Jun Li Zihao Yan Xiaokun Wang Feng Lin Qinghua Ma Huaixiu Liu Haoran Guan Yueying Xun Xiaoying Kang Peijie Luan Xiao Feng Yue Pang Qingwei Li Yinglun Han 2021Acta Biochimica et Biophysica Sinica2021,53,11:0
5Large transverse thermoelectric figure of merit in a topological Dirac semimetal显示文摘The Seebeck effect encounters a few fundamental constraints hindering its thermoelectric(TE)conversion efficiency.Most notably,there are the charge compensation of electrons and holes that diminishes this effect,and the Wiedemann-Franz(WF)law that makes independent optimization of the corresponding electrical and thermal conductivities impossible.Here,we demonstrate that in the topological Dirac semimetal Cd3As2 the Nernst effect,i.e.,the transverse counterpart of the Seebeck effect,can generate a large TE figure of merit zNT.At room temperature,zNT≈0.5 in a small field of 2 T and it significantly surmounts its longitudinal counterpart for any field.A large Nernst effect is generically expected in topological semimetals,benefiting from both the bipolar transport of compensated electrons and holes and their high mobilities.In this case,heat and charge transport are orthogonal,i.e.,not intertwined by the WF law anymore.More importantly,further optimization of zNT by tuning the Fermi level to the Dirac node can be anticipated due to not only the enhanced bipolar transport,but also the anomalous Nernst effect arising from a pronounced Berry curvature.A combination of the topologically trivial and nontrivial advantages promises to open a new avenue towards high-efficient transverse thermoelectricity.JunSen Xiang SiLe Hu Meng Lyu WenLiang Zhu ChaoYang Ma ZiYu Chen Frank Steglich GenFu Chen PeiJie Sun 2020Science China(Physics,Mechanics & Astronomy)2020,63,3:0
6Vertical 3D Nanostructures Boost Efficient Hydrogen Production Coupled with Glycerol Oxidation Under Alkaline Conditions显示文摘Hydrogen production from electrolytic water is an important sustainable technology to realize renewable energy conversion and carbon neutrality.However,it is limited by the high overpotential of oxygen evolution reaction(OER)at the anode.To reduce the operating voltage of electrolyzer,herein thermodynamically favorable glycerol oxidation reaction(GOR)is proposed to replace the OER.Moreover,vertical Ni O flakes and NiMoNH nanopillars are developed to boost the reaction kinetics of anodic GOR and cathodic hydrogen evolution,respectively.Meanwhile,excluding the explosion risk of mixed H_2/O_(2),a cheap organic membrane is used to replace the expensive anion exchange membrane in the electrolyzer.Impressively,the electrolyzer delivers a remarkable reduction of operation voltage by 280 mV,and exhibits good long-term stability.This work provides a new paradigm of hydrogen production with low cost and good feasibility.Shanlin Li Danmin Liu Guowei Wang Peijie Ma Xunlu Wang Jiacheng Wang Ruguang Ma 2023Nano-Micro Letters2023,15,10:0
7Current Distribution of Vegetation Resources in Yunnan-Guizhou Plateau and Mechanism Research of Its Effects on Rocky Desertification Process显示文摘Yunnan-Guizhou Plateau is the core area of the rocky desertification in the Chinese southwest Karst regions, and the existing studies are very limited to describe the process of rocky desertification quantitatively. The vegetation resources are applied as the key indicators in quantitative description of the degree of rocky desertification damage, and the previous methods using only remote sensing datasets are not competent to distinguish the detailed information of vegetation type, coverage and patch fragmentation on a large scale. Previous research shows that the technology of unmanned aerial vehicle and the estimation software of fraction vegetation coverages and patches could be accurately and rapidly to exploit vegetation resource information. In this project, current distribution of vegetation resources in Yunnan-Guizhou Plateau was clarified to reveal the influence mechanism of the rocky desertification. The control factors of rocky desertification distribution and the driving reasons of its dynamic changes were explained by the data of terrain, climate, population, economics and policy. Therefore, it could get the current distribution of vegetation resources in Yunnan-Guizhou Plateau, especially the grassland resources could be updated, which could not provide research foundations and scientific implications for resolving the rocky desertification, but also could provide valuable background information for the programs of restoring ecological environment and increasing local people's income in Yunnan-Guizhou Plateau.Peijie MA Wen ZHANG Bentian MO Xirui RUAN 2017Agricultural Science & Technology2017,18,5:0
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