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Featured researches published by Mokhlesur Rahman.


Journal of Materials Chemistry | 2010

SnO2–NiO–C nanocomposite as a high capacity anode material for lithium-ion batteries

Mohd Faiz Hassan; Mokhlesur Rahman; Zaiping Guo; Zhixin Chen; Hua-Kun Liu

Carbon-coated SnO2–NiO nanocomposite was successfully synthesized via the molten salt route, using SnCl2·H2O and NiCl2·6H2O as the starting materials, with a molten salt composition of H2O2 : LiOH·H2O : LiNO3 as a solvent at 300 °C. The synthesis was followed by a carbon layering process. The phases and morphology of the as-prepared samples were examined by X-ray diffraction and transmission electron microscopy. Electrochemical investigation was carried out by using a series of complementary techniques, including galvanostatic charge–discharge, cyclic voltammetry, and impedance spectroscopy. The results confirmed that the carbon-coated SnO2–NiO nanocomposite has higher discharge capacity, better rate capability, and excellent cycling performance in comparison to the uncoated SnO2–NiO nanocomposite. The carbon-coated SnO2–NiO nanocomposite electrode exhibited a reversible capacity of about 529 mA h g−1 at 800 mA g−1, and 265 mA h g−1 at 1600 mA g−1, even after 500 cycles. The excellent electrochemical performance of the SnO2–NiO–C nanocomposite can be mainly attributed to the combined effects of the nanostructure, the carbon layering on the SnO2 and NiO nanoparticles, and the ultra-fine carbon matrix, because the three factors would contribute to high electronic conductivity, reduce the traverse time of electrons and lithium ions, and also prevent high volume expansion during cycling. Due to its excellent electrochemical performance, the SnO2–NiO–C nanocomposite could be considered as a promising anode material for future lithium-ion batteries to be used in electric vehicles and hybrid electric vehicles.


Electrochimica Acta | 2010

Solvent-assisted molten salt process: A new route to synthesise α-Fe2O3/C nanocomposite and its electrochemical performance in lithium-ion batteries

Mohd Faiz Hassan; Mokhlesur Rahman; Zaiping Guo; Zhixin Chen; Hua-Kun Liu


Electrochimica Acta | 2009

Hydrothermal synthesis of nanostructured Co3O4 materials under pulsed magnetic field and with an aging technique, and their electrochemical performance as anode for lithium ion battery

Mokhlesur Rahman; Jiazhao Wang; Xiaolong Deng; Ying Li; Hua-Kun Liu


Electrochimica Acta | 2009

A facile route to carbon-coated SnO2 nanoparticles combined with a new binder for enhanced cyclability of Li-ion rechargeable batteries

Shu-Lei Chou; Jiazhao Wang; Chao Zhong; Mokhlesur Rahman; Hua-Kun Liu; Shi Xue Dou


Journal of Power Sources | 2010

Basic molten salt process—A new route for synthesis of nanocrystalline Li4Ti5O12-TiO2 anode material for Li-ion batteries using eutectic mixture of LiNO3-LiOH-Li2O2

Mokhlesur Rahman; Jiazhao Wang; Mohd Faiz Hassan; Shu-Lei Chou; David Wexler; Hua-Kun Liu


Electrochimica Acta | 2010

Enhanced lithium storage in a VO2(B)-multiwall carbon nanotube microsheet composite prepared via an in situ hydrothermal process

Mokhlesur Rahman; Jiazhao Wang; Nurul Hayati Idris; Zhixin Chen; Hua-Kun Liu


Composites Science and Technology | 2011

Synthesis and electrochemical performance of LiV3O8/carbon nanosheet composite as cathode material for lithium-ion batteries

Nurul Hayati Idris; Mokhlesur Rahman; Jiazhao Wang; Zhixin Chen; Hua-Kun Liu


Electrochimica Acta | 2011

Rapid synthesis of binary α-NiS–β-NiS by microwave autoclave for rechargeable lithium batteries

Nurul Hayati Idris; Mokhlesur Rahman; Shu-Lei Chou; Jiazhao Wang; David Wexler; Hua-Kun Liu


Electrochimica Acta | 2012

Electrodeposited polypyrrole (PPy)/para (toluene sulfonic acid) (pTS) free-standing film for lithium secondary battery application

Irin Sultana; Mokhlesur Rahman; Sha Li; Jiazhao Wang; Caiyun Wang; Gordon G. Wallace; Hua-Kun Liu


Journal of Applied Electrochemistry | 2010

Nanocrystalline NiO hollow spheres in conjunction with CMC for lithium-ion batteries

Chao Zhong; Jiazhao Wang; Shu-Lei Chou; Konstantin Konstantinov; Mokhlesur Rahman; Hua-Kun Liu

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Hua-Kun Liu

University of Wollongong

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Jiazhao Wang

University of Wollongong

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Shu-Lei Chou

University of Wollongong

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Zhixin Chen

University of Wollongong

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Chao Zhong

University of Wollongong

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Caiyun Wang

University of Wollongong

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David Wexler

University of Wollongong

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