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Featured researches published by Yaxiang Lu.


Small | 2017

Advanced Nanostructured Anode Materials for Sodium-Ion Batteries

Qidi Wang; Chenglong Zhao; Yaxiang Lu; Yunming Li; Y.G. Zheng; Yuruo Qi; Xiaohui Rong; Liwei Jiang; Xinguo Qi; Yuanjun Shao; Du Pan; Baohua Li; Yong-Sheng Hu; Liquan Chen

Sodium-ion batteries (NIBs), due to the advantages of low cost and relatively high safety, have attracted widespread attention all over the world, making them a promising candidate for large-scale energy storage systems. However, the inherent lower energy density to lithium-ion batteries is the issue that should be further investigated and optimized. Toward the grid-level energy storage applications, designing and discovering appropriate anode materials for NIBs are of great concern. Although many efforts on the improvements and innovations are achieved, several challenges still limit the current requirements of the large-scale application, including low energy/power densities, moderate cycle performance, and the low initial Coulombic efficiency. Advanced nanostructured strategies for anode materials can significantly improve ion or electron transport kinetic performance enhancing the electrochemical properties of battery systems. Herein, this Review intends to provide a comprehensive summary on the progress of nanostructured anode materials for NIBs, where representative examples and corresponding storage mechanisms are discussed. Meanwhile, the potential directions to obtain high-performance anode materials of NIBs are also proposed, which provide references for the further development of advanced anode materials for NIBs.


Chinese Physics Letters | 2018

A High-Temperature

Liwei Jiang; Yaxiang Lu; Yuesheng Wang; Lilu Liu; Xingguo Qi; Chenglong Zhao; Liquan Chen; Yong-Sheng Hu

The high-temperature β-phase NaMnO 2 is a promising material for Na-ion batteries (NIBs) due to its high capacity and abundant resources. However, the synthesis of phase-pure β-NaMnO 2 is burdensome and costineffective because it needs to be sintered under oxygen atmosphere at high temperature and followed by a quenching procedure. Here we first report that the pure β phase can be stabilized by Cu-doping and easily synthesized by replacing a proportion of Mn with Cu via a simplified process including sintering in air and cooling to room temperature naturally. Based on the first-principle calculations, the band gap decreases from 0.7 eV to 0.3 eV, which indicates that the electronic conductivity can be improved by Cu-doping. The designed β-NaCu0.1 Mn 0.9 O 2 is applied as cathode in NIBs, exhibiting an energy density of 419Wh/kg and better performance in terms of rate capability and cycling stability than those in the undoped case.


Chinese Physics Letters | 2000

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杨海军; 陈国明; 杨民; 熊兆华; 卢亮; 吕雨生; 陈和生; 唐孝威; Haijun Yang; Gaopeng Chen; Meng Yang; Zhuan-Xian Xiong; Li Lu; Yaxiang Lu; Hongsheng Chen; Xianzhu Tang; Bn Jin

Single W boson production is analyzed in a data sample collected by L3 detector at Large Electron Positron Collider in 1998. The integrated luminosity is 176.4 pb-1 with center-of-mass energy at √s = 189 GeV. The signal consists of large missing energy final states with a single energetic lepton or two hadronic jets. The total cross section of single W production is measured to be 0.58 ± 0.13 ± 0.04 pb, in good agreement with standard model prediction. From this measurement, the limits on the anomalous γWW triple-gauge-boson couplings are derived at 95% confidence level: -0.48< Δκγ < 0.38 and -0.50 < λγ < 0.41.


Energy Storage Materials | 2017

-Phase NaMnO

Yunming Li; Yaxiang Lu; Chenglong Zhao; Yong-Sheng Hu; Maria-Magdalena Titirici; Hong Li; Xuejie Huang; Liquan Chen


Small Methods | 2017

_{2}

Chenglong Zhao; Yaxiang Lu; Yunming Li; Liwei Jiang; Xiaohui Rong; Yong-Sheng Hu; Hong Li; Liquan Chen


Nano Energy | 2017

Stabilized by Cu Doping and Its Na Storage Properties

Y.G. Zheng; Yuesheng Wang; Yaxiang Lu; Yong-Sheng Hu; Ju Li


Journal of Physics D | 2017

Single W boson production at root s=189 GeV

Chenglong Zhao; Qidi Wang; Yaxiang Lu; Yong-Sheng Hu; Baohua Li; Liquan Chen


Advanced Energy Materials | 2018

Recent advances of electrode materials for low-cost sodium-ion batteries towards practical application for grid energy storage

Chenglong Zhao; Lilu Liu; Xingguo Qi; Yaxiang Lu; Feixiang Wu; Junmei Zhao; Yan Yu; Yong-Sheng Hu; Liquan Chen


ACS Applied Materials & Interfaces | 2017

Novel Methods for Sodium‐Ion Battery Materials

Xingguo Qi; Lilu Liu; Ningning Song; Fei Gao; Kai Yang; Yaxiang Lu; Haitao Yang; Yong-Sheng Hu; Zhao-hua Cheng; Liquan Chen


Journal of Power Sources | 2017

A high-performance sodium-ion battery enhanced by macadamia shell derived hard carbon anode

Yaxiang Lu; Lianqin Wang; Kathrin Preuß; Mo Qiao; Maria-Magdalena Titirici; John R. Varcoe; Qiong Cai

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Yong-Sheng Hu

Chinese Academy of Sciences

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Liquan Chen

Chinese Academy of Sciences

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Chenglong Zhao

Chinese Academy of Sciences

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Yunming Li

Chinese Academy of Sciences

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Hong Li

Chinese Academy of Sciences

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Xingguo Qi

Chinese Academy of Sciences

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Xuejie Huang

Chinese Academy of Sciences

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Liwei Jiang

Chinese Academy of Sciences

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Yuesheng Wang

Chinese Academy of Sciences

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