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Featured researches published by L.C. Yang.


Journal of Materials Chemistry | 2007

Natural graphite coated by Si nanoparticles as anode materials for lithium ion batteries

T. Zhang; J. Gao; L.J. Fu; L.C. Yang; Yuping Wu; Haoyu Wu

Nano-sized crystalline silicon particles, prepared by a laser-induced vapour deposition method, were coated onto the surface of particles of a modified natural graphite (SSG) by sonicated dispersion and a subsequent heat-treatment process. The microstructure of the Si-coated SSG was characterized by X-ray diffraction (XRD) and scanning electron microscopy (SEM). It was found that the nanometer-scale Si particles were uniformly and completely coated on the surface of SSG particles, and both the Si and SSG particles existed in the crystalline state. The Si-coated SSG exhibits a much higher reversible capacity than pristine SSG, while keeping the good cycling performance of SSG material. The higher capacity can be ascribed to the alloying of Si with lithium. Because of the heat-treatment at 600 °C, used to achieve a good combination of Si with the SSG base, the cycling of the composites is very satisfactory. As a result, Si-coated SSG is a promising anode material for lithium ion batteries.


Pure and Applied Chemistry | 2006

Core-shell Si/C nanocomposite as anode material for lithium ion batteries

T. Zhang; L.J. Fu; J. Gao; L.C. Yang; Yuping Wu; Hoqing Wu

We report an effective method for the synthesis of a core-shell Si/C nanocomposite, and its application as anode material for lithium ion (Li-ion) batteries. Polyacrylonitrile (PAN)-coated Si nanoparticles are formed by emulsion polymerization, and this precursor is heat-treated under argon to generate a Si/C core-shell nanocomposite. The conductive carbon shell envelops the silicon nanoparticles and suppresses aggregation of the nanoparticles during cycling. Meanwhile, the carbon shell combines closely with the nanocores, and significantly enhances the kinetics of lithium intercalation and de-intercalation, as well as the apparent diffusion coefficient of Li-ions. Consequently, the core-shell Si/C nanocomposite exhibits better electrochemical performance than pure Si nanoparticles, indicating that this is a promising approach to improve cyclability and kinetics of nano-anode materials for Li-ion batteries.


Pure and Applied Chemistry | 2008

Nanostructured anode materials for Li-ion batteries

Nahong Zhao; L.J. Fu; L.C. Yang; T. Zhang; Gaojun Wang; Yuping Wu; Teunis van Ree

This paper focuses on the latest progress in the preparation of a series of nanostructured anode materials in our laboratory and their electrochemical properties for Li-ion batteries. These anode materials include core-shell structured Si nanocomposites, TiO2 nanocomposites, novel MoO2 anode material, and carbon nanotube (CNT)-coated SnO2 nanowires (NWs). The substantial advantages of these nanostructured anodes provide greatly improved electrochemical performance including high capacity, better cycling behavior, and rate capability.


Angewandte Chemie | 2007

An Aqueous Rechargeable Lithium Battery with Good Cycling Performance

Gaojun Wang; L.J. Fu; Nahong Zhao; L.C. Yang; Yuping Wu; Haoqing Wu


Electrochemistry Communications | 2008

Study on electrochemical performance of activated carbon in aqueous Li2SO4, Na2SO4 and K2SO4 electrolytes

Q.T. Qu; B. Wang; L.C. Yang; Yongmei Shi; S. Tian; Yuping Wu


Electrochemistry Communications | 2007

Preparation and electrochemical properties of core-shell Si/SiO nanocomposite as anode material for lithium ion batteries

T. Zhang; J. Gao; H.P. Zhang; L.C. Yang; Yuping Wu; Haoyu Wu


Electrochimica Acta | 2007

Characteristics of an aqueous rechargeable lithium battery (ARLB)

Guohua Wang; Nian Zhao; L.C. Yang; Yuping Wu; Haoyu Wu; Rudolf Holze


Journal of Power Sources | 2007

Preparation of Cu2O particles with different morphologies and their application in lithium ion batteries

L.J. Fu; J. Gao; T. Zhang; Q. Cao; L.C. Yang; Yuping Wu; Rudolf Holze; Haoyu Wu


Electrochimica Acta | 2008

The structural evolution and lithiation behavior of vacuum-deposited Si film with high reversible capacity

T. Zhang; H.P. Zhang; L.C. Yang; B. Wang; Yuping Wu; Tsutomu Takamura


Journal of Power Sources | 2007

Effect of Cu2O coating on graphite as anode material of lithium ion battery in PC-based electrolyte

L.J. Fu; J. Gao; T. Zhang; Q. Cao; L.C. Yang; Y.P. Wu; Rudolf Holze

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Rudolf Holze

Chemnitz University of Technology

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