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7篇 您的检索式:作者名="Wenhua Zuo"
    题名 作者 年代 出处 被引量
1The Impact of Group Velocity on Frequency-Hopping Optical Code Division Multiple Access System显示文摘Zuo Chao Ma Wenhua Pu Hongtu 2001Journal of Lightwave Technology2001,19,10:1
2Synthesis,Structure,Electrochemical Mechanisms,and Atmospheric Stability of Mn-Based Layered Oxide Cathodes for Sodium Ion Batteries显示文摘CONSPECTUS:The commercialization of lithium ion batteries(LIBs)triggered a new era of portable electronics and electric vehicles,which changed our daily life remarkably.Meanwhile,LIBs are promising as large-scale storage batteries in green electric grids by using renewable energy as the primary energy source.Driven by the concerns of lithium depletion and the turbulent price of Li,Ni,and Co mineral resources,sodium ion batteries(NIBs)have been intensively investigated and are becoming a strong competitor for large-scale energy storage,such as in national grids.Wenhua Zuo Yong Yang 2022Accounts of Materials Research2022,3,7:1
3Performance analysis on phase-encoded OCDMA communication system显示文摘Ma Wenhua Zuo Chao Pu Hongtu 2002J Light Technol2002,20,5:1
4Relationship Between Credit Access and Agri-economy显示文摘With the rapid development of Chinese economy,the question of credit is becoming more and more important.Especially in China rural area,building a new socialist countryside needs the support of finance.While as we all known,the financial system in rural area is not effective enough to promote the productivity and the level of welfare of household.TANG Sai WANG Jiheng PAN Wenhua WANG Tingrui ZUO Hong 2008Journal of Northeast Agricultural University(English Edition)2008,15,1:0
5Surface-targeted functionalization of nickel-rich cathodes through synergistic slurry additive approach with multi-level impact using minimal quantity显示文摘LiNi0.8Co0.1Mn0.1O_(2)(NCM811),a Ni-rich layered oxide,is a promising cathode material for high-energy density lithium-ion batteries(LIBs).However,its structural instability,caused by adverse phase transitions and continuous oxygen release,as well as deteriorated interfacial stability due to excessive electrolyte oxidative decomposition,limits its widespread application.To address these issues,a new concept is proposed that surface targeted precise functionalization(STPF)of the NCM811 cathode using a synergistic slurry additive(SSA)approach.This approach involves coating the NCM811 particle surface with 3-aminopropyl dimethoxy methyl silane(3-ADMS),followed by the precise deposition of ascorbic acid via an acid-base interaction.The slurry additives induce the formation of an ultra-thin spinel surface layer and a stable cathode–electrolyte interface(CEI),which enhances the electrochemical kinetics and inhibits crack propagation.The STPF strategy implemented by the SSA approach significantly improves the cyclic stability and rate performance of the NCM811 cathode in both half-cell and full-cell configurations.This work establishes a promising strategy to enhance the structural stability and electrochemical performance of nickel-rich cathodes and provides a feasible route to promote practical applications of high-energy density lithium-ion battery technology.Jing Zhang Jiapei Li Longhao Cao Wenhua Cheng Ziyin Guo Xiuxia Zuo Chao Wang Ya-Jun Cheng Yonggao Xia Yudai Huang 2024Nano Research2024,17,1:0
6OBSERVATION OF MEGAKARYOCYTOPOIESIS IN HUMAN FETUS BY IMMUNOCYTOCHEMICAL STAINING WITH ANTI-PLATELET GLYCOPROTEIN ⅡB /ⅢA MONOCLONAL ANTIBODY显示文摘Fetal liver tissues obtained from 28 human fetuses with gestation age from 3 to 6 months and fetal bone marrow from 35 human fetuses from 3 to 7 months were observed by immunochemical staining with anti-platelet GPⅡ b / Ⅲa monoclonal antibody and ABC technique. In the fetal liver, megakaryocytes were wholly located among growing fetal liver cells and near foci of hemopoiesis. Some megakaryocytes in the fetal liver were small7890- lymphoid-like megakaryocytes. The size of megakaryocytes both in the fetal liver (14.79 ± 4.52μm) and in the fetal bone marrow (16.08±7.39 μm) was small, which did not vary significantly over the gestation age ranging from 3 to 6 or 7 months. However, the maturation stage of megakaryocytes in the fetal liver shifted to more mature stage with the advancement of gestation, although the maturation stage of megakaryocytes in the fetal bone marrow did not change with the advancement of gestation from 4 to 7 months, the megakaryocyte in the fetal bone marrow was less matureMA Dongchu CHU Junjie SUN Yinghui CHANG Kuizhong ZUO Wei (Department of Experimental Medicine, General Hospital of Shenyang Shenyang, China) Correspondence: Dr. MA Dongchu, Department of Experimental Medicine, General Hospital of Shenyang, 83, Wenhua Road, Shenyang, Liaoning 110015, China. 1994中国实验血液学杂志1994,2,2:0
7Direct growth of Fe_3O_4-MoO_2 hybrid nanofilm anode with enhanced electrochemical performance in neutral aqueous electrolyte显示文摘To enhance the electrochemical energy storage performance of supercapacitors(SCs), the current researches are general directed towards the cathode materials. However, the anode materials are relatively less studied. In the present work, Fe_3O_4-MoO_2(FO-MO) hybrid nano thin film directly grown on Ti substrate is investigated, which is used as high-performance anode material for SCs in Li_2SO_4 electrolyte with the comparison to pristine Fe_3O_4 nanorod array. The areal capacitance of FO-MO hybrid electrode was initially found to be 65.0 m F cm^(-2)at 2 m Vs^(-1)and continuously increased to 260.0% after 50 cycles of activation. The capacitance values were considerably comparable or higher than many reported thinfilm iron oxide-based anodes in neutral electrolyte. With the protection of MoO_2 shell, the FO-MO electrode developed in this study also exhibited excellent cyclic stability(increased to 230.8% after 1000cycles). This work presents a promising way to improve the electrochemical performance of iron oxidebased anodes for SCs.Ruizhi Li Xin Ba Yimeng Wang Wenhua Zuo Chong Wang Yuanyuan Li Jinping Liu 2016Progress in Natural Science:Materials International2016,26,3:0
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