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Featured researches published by Haiyang Liao.


RSC Advances | 2017

Rapid preparation of SnO2/C nanospheres by using organotin as building blocks and their application in lithium-ion batteries

Liuqing Li; Haiyan Zhang; Zhaopeng Li; Weihao Zhong; Haiyang Liao; Zhenghui Li

Constructing an electrode integrating ultralow SnO2 size, stable carbon barriers and well-developed pore structure are effective to address the issues of crack and pulverization for SnO2-based electrode during lithiation/delithiation process. But until now, it is still a challenge to exploit simple and robust method to fabricate ultrasmall SnO2 particles embedded in a carbon matrix. Herein, we develop a rapid strategy to prepare SnO2/C nanospheres using a simple Friedel–Crafts crosslinking of triphenyltin chloride for only 15 min and subsequent carbonization. The SnO2/C nanospheres (∼500 nm) have ultrasmall SnO2 particles of 4 nm, which were dispersed in carbon continuous phase. Moreover, the pyrolysis of the polymer during carbonization creates considerable micropores inside the carbon phase and leads to a surface area of 463.3 m2 g−1. When used as electrode materials in a lithium-ion battery, the ultrasmall SnO2 particles can prevent the cracking of the electrode, the carbon continuous phase can act as a buffer to protect SnO2 particles from aggregation, and micropores will supply expansive space for volume change. Thus, the SnO2/C nanosphere exhibits superior electrochemical performance, e.g., the first discharge and charge capacities can reach 1453 and 719 mA h g−1 respectively, and 120 cycles later, its capacity remains 629 mA h g−1, indicating a capacity retention of 87.4% (C120th/C2nd).


Journal of Membrane Science | 2016

Novel cellulose aerogel coated on polypropylene separators as gel polymer electrolyte with high ionic conductivity for lithium-ion batteries

Haiyang Liao; Haiyan Zhang; Haoqun Hong; Zhenghui Li; Gai Qin; Haiping Zhu; Yingxi Lin


Journal of Membrane Science | 2016

Preparation of hydrophilic polyethylene/methylcellulose blend microporous membranes for separator of lithium-ion batteries

Haiyang Liao; Haoqun Hong; Haiyan Zhang; Zhenghui Li


Composites Part A-applied Science and Manufacturing | 2014

Significant improvement in performance of recycled polyethylene/wood flour composites by synergistic compatibilization at multi-scale interfaces

Haoqun Hong; Haiyang Liao; Hai Yan Zhang; Hui He; Tao Liu; Demin Jia


Electrochimica Acta | 2016

Ultrathin carbon gauze for high-rate supercapacitor

Zhenghui Li; Liuqing Li; Zhaopeng Li; Haiyang Liao; Haiyan Zhang


Electrochimica Acta | 2017

Novel flower-like hierarchical carbon sphere with multi-scale pores coated on PP separator for high-performance lithium-sulfur batteries

Haiyang Liao; Haiyan Zhang; Haoqun Hong; Zhenghui Li; Yingxi Lin


Materials Letters | 2014

Facile method to prepare self-healable PVA hydrogels with high water stability

Haoqun Hong; Haiyang Liao; Shujia Chen; Haiyan Zhang


RSC Advances | 2017

A macro-porous graphene oxide-based membrane as a separator with enhanced thermal stability for high-safety lithium-ion batteries

Haiyang Liao; Haiyan Zhang; Gai Qin; Zhenghui Li; Liuqing Li; Haoqun Hong


Materials Letters | 2016

Pore size control of porous carbons using novel silica-based copolymer template and their application in supercapacitor

Zhenghui Li; Liuqing Li; Haiping Zhu; Haiyang Liao; Haiyan Zhang


Journal of Materials Science | 2016

Facile synthesis of graphitic porous carbons with three-dimensional nanonetwork for high-rate supercapacitive energy storage

Zhenghui Li; Haiyan Zhang; Haiping Zhu; Liuqing Li; Haiyang Liao

Collaboration


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Haiyan Zhang

Guangdong University of Technology

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Zhenghui Li

Guangdong University of Technology

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Haoqun Hong

Guangdong University of Technology

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Liuqing Li

Guangdong University of Technology

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Gai Qin

Guangdong University of Technology

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Yingxi Lin

Guangdong University of Technology

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Haiping Zhu

Guangdong University of Technology

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Zhaopeng Li

Guangdong University of Technology

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Danfeng Zhang

Guangdong University of Technology

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Jingyang Tian

Guangdong University of Technology

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