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13篇 您的检索式:作者名="Yanbin NING"
    题名 作者 年代 出处 被引量
1The nature of irreversible phase transformation propagation in nickel-rich layered cathode for lithium-ion batteries显示文摘Ni-rich layered cathode is regarded as one of the most promising candidates to achieve lithium-ion batteries (LIBs) with high energy density. However, due to the irreversible phase transformation (IPT) and its eventual propagation from surface to the bulk of the material, Ni-rich layered cathode typically suffers from severe capacity fading, structure failure, and thermal instability, which greatly hinders its mass adoption. Hence, achieving an in-depth understanding of the IPT propagation mechanism in Ni-rich layered cathode is crucial in addressing these issues. Herein, the triggering factor of IPT propagation in Ni-rich cathode is verified to be the initial surface disordered cation mixing domain covered by a thin rock-salt phase, instead of the rock-salt phase itself. According to the density functional theory (DFT) results, it is further illustrated that the metastable cation mixing domain possesses a lower Ni migration energy barrier, which facilitates the migration of Ni ions towards the Li slab, and thus driving the propagation of IPT from surface to the bulk of the material. This finding clarifies a prevailing debate regarding the surface impurity phases of Ni-rich cathode material and reveals the origin of IPT propagation, which implies the principle and its effectiveness of tuning the surface microstructure to address the structural and thermal instability issue of Ni-rich layered cathode materials.Feng Wu Na Liu Lai Chen Ning Li Jinyang Dong Yun Lu Guoqiang Tan Mingzhe Xu Duanyun Cao Yafei Liu Yanbin Chen Yuefeng Su 2021Journal of Energy Chemistry2021,30,11:2
2A hybrid biometric identification framework for high security applications显示文摘Xuzhou LI Yilong YIN Yanbin NING Gongping YANG Lei PAN 2015Frontiers of Computer Science2015,9,3:1
3Microstructure evolution and mechanical properties of Al2O3sf/AZ91D magnesium matrix composites fabricated by squeeze casting显示文摘Zude Zhao Qiang Chen Zejun Tang Yanbin Wang Haiqing Ning 2010Journal of Materials Science2010,,13:1
4Support vector ma- chine forecasting method improved by chaotic particle swarm optimization and its application 显示文摘LI Yanbin ZHANG Ning LI Cunbin 2009Journal of Central South University of Technology2009,,16:1
5High Precision Digital Frequency Signal Source Based on FPGA显示文摘Shi Yanbin GuoJ ian Gui Ning 2012Physics Proccdia2012,25,13:1
6Microstructure evolution and mechanical properties of Al2O3sf/AZ91D magnesium matrix composites fabricated by squeeze casting显示文摘Zude Zhao Qiang Chen Zejun Tang Yanbin Wang Haiqing Ning 2010Journal of Materials Science2010,,13:1
7Microstructure evolution and mechanical properties of Al2O3sf/AZ91D magnesium matrix composites fabricated by squeeze casting显示文摘Zude Zhao Qiang Chen Zejun Tang Yanbin Wang Haiqing Ning 2010Journal of Materials Science2010,,13:1
8High precision digital fre-quency signal source based on FPGA 显示文摘SHI Yanbin GUO Jian CUI Ning 2012Physics procedia2012,25,27:1
9Insoluble carbonaceous materials as electron shuttles enhance the anaerobic/anoxic bioremediation of redox pollutants:Recent advances显示文摘Carbonaceous materials can accelerate extracellular electron transfer for the biotransformation of many recalcitrant,redox-sensitive contaminants and have received considerable attention in fields related to anaerobic bioremediation.As important electron shuttles(ESs),carbonaceous materials effectively participate in redox biotransformation processes,especially microbially-driven Fe reduction or oxidation coupled with pollutions transformation and anaerobic fermentation for energy and by-product recovery.The related bioprocesses are reviewed here to show that carbonaceous ESs can facilitate electron transfer between microbes and extracellular substrates.The classification and characteristics of carbon-containing ESs are summarized,with an emphasis on activated carbon,graphene,carbon nanotubes and carbonbased immobilized mediators.The influencing factors,including carbon material properties(redox potential,electron transfer capability and solubility)and environmental factors(temperature,p H,substrate concentration and microbial species),on pollution catalytic efficiency are discussed.Furthermore,we briefly describe the prospects of carbonaceous ESs in the field of microbial-driven environmental remediation.Ning Li Jin Jiang Yanbin Xu Hanping Pan Xiaonan Luo Yingbin Hu Jie Cao 2022Chinese Chemical Letters2022,33,1:0
103-10 Swift Heavy Ion Induced Modification of Fe/Cu Multilayers显示文摘When swift heavy ion (SHI) passes through metallic multilayers, the kinetic energy of the ion is mainly depositedto target electron subsystem (electronic energy loss, Se) by the inelastic collisions involving excitation and ionizationof the target atoms, which could induce atomic displacements and modify the interfacial structure [1?6]. Therefore,through the study of the process of the interfacial atoms diffusion induced by SHI irradiation, we could explore thepossible mechanism of atomic displacement induced by swift heavy ion irradiation.Wei Kongfang Li Bingsheng Zhu Yabin Zhu Huiping Gao Ning Shen Tielong Yao Cunfeng Sun Jianrong Pang Lilong Cui Minghuan Chang Hailong Wang Ji Wang Dong Sheng Yanbin Zhang Hongpeng Wang Zhiguang Gao Xing 2014IMP & HIRFL Annual Report2014,,1:0
11透射电子显微镜研究低能高剂量氦离子辐照引起非晶6H-SiC微观结构演化过程显示文摘Silicon carbide(SiC)is regarded as an important material in nuclear energy system and semiconductor industry,because of its excellent physical,electronic and optical properties.It is inevitable that dense atomic He atoms produced by(n,)nuclear transmutation reaction.Due to the low solubility of He atoms in SiC,He atoms are easy to be trapped by vacancies to form helium-vacancy clusters.After thermal annealing,helium atoms will escape from vacancies,to form cavities.In semiconductor technology,He implantation-induced cavities have lots of important applications.Therefore,the study of He-implanted SiC is critical.He-implantation-induced cavities have been extensively investigated.He-implantation-induced dislocation loops also have been investigated.Chen et al.observed interstitial-type dislocation loops associated with He bubbles due to the release of bubble interior pressure via emitting interstitials[1].These interstitials agglomerate into dislocation loops.It is consistent with previous results observed in the case of He-implanted 6H-SiC[2].What’s more,Barbot et al.regarded that the growth of the Frank loops lead to the formation of stacking faults,which do not result from the agglomeration of interstitials[3].Li Bingsheng Han Yi Wang Zhiguang Wei Kongfang Shen Tielong Sun Jianrong Yao Cunfeng Gao Ning Gao Xing Pang Lilong Zhu Yabin Chang Hailong Cui Minghuan Luo Peng Sheng Yanbin Zhang Hongpeng Fang Xuesong Zhao Sixiang Jin Jin Huang Yuxuan Liu Chao Tai Pengfei Wang Dong He Wenhao Qi Ming 2017IMP & HIRFL Annual Report2017,,1:0
124-1 Lattice Disorder Produced in GaN by He-ion Implantation显示文摘Because of excellent electronic and optical properties,GaN has been used in the laser diodes,microwave,ultrahigh power switches and other fields.Due to an attractive process for selective region doping of semiconductor devices,ion implantation has widely been applied to GaN fabrication processing.However,ion implantation introduces extensive damage that can degrade the performance,properties as well as lifetimes of the devices.Thus,it is very important to understand the ion-beam damage processes in the fabrication of GaN-based devices.The effects of ion implantation into GaN have been extensively investigated.Li Bingsheng Han Yi Wang Zhiguang Wei Kongfang Shen Tielong Sun Jianrong Yao Cunfeng Gao Ning Gao Xing Pang Lilong Zhu Yabin Chang Hailong Cui Minghuan Luo Peng Sheng Yanbin Zhang Hongpeng Fang Xuesong Zhao Sixiang Jin Jin Huang Yuxuan Liu Chao Tai Pengfei Wang Dong He Wenhao Qi Ming 2016IMP & HIRFL Annual Report2016,,1:0
13Simultaneous Feammox and anammox process facilitated by activated carbon as an electron shuttle for autotrophic biological nitrogen removal显示文摘Ferric iron reduction coupled with anaerobic ammonium oxidation(Feammox)is a novel ferric-dependent autotrophic process for biological nitrogen removal(BNR)that has attracted increasing attention due to its low organic carbon requirement.However,extracellular electron transfer limits the nitrogen transformation rate.In this study,activated carbon(AC)was used as an electron shuttle and added into an integrated autotrophic BNR system consisting of Feammox and anammox processes.The nitrogen removal performance,nitrogen transformation pathways and microbial communities were investigated during 194 days of operation.During the stable operational period(days 126–194),the total nitrogen(TN)removal efficiency reached 82.9%±6.8%with a nitrogen removal rate of 0.46±0.04 kg-TN/m^(3)/d.The contributions of the Feammox,anammox and heterotrophic denitrification pathways to TN loss accounted for 7.5%,89.5%and 3.0%,respectively.Batch experiments showed that AC was more effective in accelerating the Feammox rate than the anammox rate.X-ray photoelectron spectroscopy(XPS)analyses showed the presence of ferric iron(Fe(III))and ferrous iron(Fe(II))in secondary minerals.X-ray diffraction(XRD)patterns indicated that secondary iron species were formed on the surface of iron-AC carrier(Fe/AC),and Fe(III)was primarily reduced by ammonium in the Feammox process.The phyla Anaerolineaceae(0.542%)and Candidatus Magasanikbacteria(0.147%)might contribute to the Feammox process,and Candidatus Jettenia(2.10%)and Candidatus Brocadia(1.18%)were the dominative anammox phyla in the bioreactor.Overall,the addition of AC provided an effective way to enhance the autotrophic BNR process by integrating Feammox and anammox.Yingbin Hu Ning Li Jin Jiang Yanbin Xu Xiaonan Luo Jie Cao 2022Frontiers of Environmental Science & Engineering2022,16,7:0
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