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Featured researches published by Yuqian Fan.


ACS Applied Materials & Interfaces | 2016

Construction of Hierarchical α-MnO2 Nanowires@Ultrathin δ-MnO2 Nanosheets Core–Shell Nanostructure with Excellent Cycling Stability for High-Power Asymmetric Supercapacitor Electrodes

Zhipeng Ma; Guangjie Shao; Yuqian Fan; Guiling Wang; Jianjun Song; Dejiu Shen

Poor electrical conductivity and mechanical instability are two major obstacles to realizing high performance of MnO2 as pseudocapacitor material. The construction of unique hierarchical core-shell nanostructures, therefore, plays an important role in the efficient enhancement of the rate capacity and the stability of this material. We herein report the fabrication of a hierarchical α-MnO2 nanowires@ultrathin δ-MnO2 nanosheets core-shell nanostructure by adopting a facile and practical solution-phase technique. The novel hierarchical nanostructures are composed of ultrathin δ-MnO2 nanosheets with a few atomic layers growing well on the surface of the ultralong α-MnO2 nanowires. The first specific capacitance of hierarchical core-shell nanostructure reached 153.8 F g(-1) at the discharge current density of as high as 20 A g(-1), and the cycling stability is retained at 98.1% after 10,000 charge-discharge cycles, higher than those in the literature. The excellent rate capacity and stability of the hierarchical core-shell nanostructures can be attributed to the structural features of the two MnO2 crystals, in which a 1D α-MnO2 nanowire core provides a stable structural backbone and the ultrathin 2D δ-MnO2 nanosheet shell creates more reactive active sites. The synergistic effects of different dimensions also contribute to the superior rate capability.


ACS Applied Materials & Interfaces | 2014

Tunable morphology synthesis of LiFePO4 nanoparticles as cathode materials for lithium ion batteries.

Zhipeng Ma; Guangjie Shao; Yuqian Fan; Guiling Wang; Jianjun Song; Tingting Liu

Olivine LiFePO4 with nanoplate, rectangular prism nanorod and hexagonal prism nanorod morphologies with a short b-axis were successfully synthesized by a solvothermal in glycerol and water system. The influences of solvent composition on the morphological transformation and electrochemical performances of olivine LiFePO4 are systematically investigated by X-ray diffraction, scanning electron microscopy, transmission electron microscopy and galvanostatic charge-discharge tests. It is found that with increasing water content in solvent, the LiFePO4 nanoplates gradually transform into hexagonal prism nanorods that are similar to the thermodynamic equilibrium shape of the LiFePO4 crystal. This indicates that water plays an important role in the morphology transformation of the olivine LiFePO4. The electrochemical performances vary significantly with the particle morphology. The LiFePO4 rectangular prism nanorods (formed in a glycerol-to-water ratio of 1:1) exhibit superior electrochemical properties compared with the other morphological particles because of their moderate size and shorter Li(+) ion diffusion length along the [010] direction. The initial discharge capacity of the LiFePO4@C with a rectangular prism nanorod morphology reaches to 163.8 mAh g(-1) at 0.2 C and over 75 mAh g(-1) at the high discharging rate of 20 C, maintaining good stability at each discharging rate.


ACS Applied Materials & Interfaces | 2015

In situ catalytic synthesis of high-graphitized carbon-coated LiFePO4 nanoplates for superior Li-ion battery cathodes.

Zhipeng Ma; Yuqian Fan; Guangjie Shao; Guiling Wang; Jianjun Song; Tingting Liu

The low electronic conductivity and one-dimensional diffusion channel along the b axis for Li ions are two major obstacles to achieving high power density of LiFePO4 material. Coating carbon with excellent conductivity on the tailored LiFePO4 nanoparticles therefore plays an important role for efficient charge and mass transport within this material. We report here the in situ catalytic synthesis of high-graphitized carbon-coated LiFePO4 nanoplates with highly oriented (010) facets by introducing ferrocene as a catalyst during thermal treatment. The as-obtained material exhibits superior performances for Li-ion batteries at high rate (100 C) and low temperature (-20 °C), mainly because of fast electron transport through the graphitic carbon layer and efficient Li(+)-ion diffusion through the thin nanoplates.


Physical Chemistry Chemical Physics | 2015

Preparation of size-selective Mn3O4 hexagonal nanoplates with superior electrochemical properties for pseudocapacitors

Guiling Wang; Zhipeng Ma; Yuqian Fan; Guangjie Shao; Lingxue Kong; Weimin Gao

Porous Mn3O4 hexagonal nanoplates were synthesized through annealing the hydrohausmannite precursor obtained by a one-pot hydrothermal process and by precisely controlling the concentrations of potassium hydroxide and glucose. The effect of potassium hydroxide and glucose on the growth of hexagonal nanoplates was investigated, and a growth mechanism was also proposed. Due to its abundant pores, the pure Mn3O4-based electrode exhibits excellent cycling stability with 100% capacity retention after 5000 cycles. The asymmetric supercapacitor exhibited high performance with an energy density of 17.276 W h kg(-1) at a power density of 207.3 W kg(-1) in a wide potential window of 1.5 V.


Electrochimica Acta | 2015

Template-free hydrothermal synthesis of nickel cobalt hydroxide nanoflowers with high performance for asymmetric supercapacitor

Yongfu Tang; Yanyan Liu; Shengxue Yu; Wanchun Guo; Shichun Mu; Hongchao Wang; Yufeng Zhao; Li Hou; Yuqian Fan; Faming Gao


Particle & Particle Systems Characterization | 2014

Ultrathin Nanoflakes Assembled 3D Hierarchical Mesoporous Co3O4 Nanoparticles for High‐Rate Pseudocapacitors

Yuqian Fan; Guangjie Shao; Zhipeng Ma; Guiling Wang; Haibo Shao; Shuai Yan


Journal of Power Sources | 2014

Ionic conductor cerous phosphate and carbon hybrid coating LiFePO4 with improved electrochemical properties for lithium ion batteries

Zhipeng Ma; Guangjie Shao; Xiujuan Qin; Yuqian Fan; Guiling Wang; Jianjun Song; Tingting Liu


Electrochimica Acta | 2015

Enhancement of electrochemical performance for LiFePO4 cathodes via hybrid coating with electron conductor carbon and lithium ion conductor LaPO4

Zhipeng Ma; Youshun Peng; Guiling Wang; Yuqian Fan; Jianjun Song; Tingting Liu; Xiujuan Qin; Guangjie Shao


ACS Sustainable Chemistry & Engineering | 2017

Fabrication of High-Performance All-Solid-State Asymmetric Supercapacitors Based on Stable α-MnO2@NiCo2O4 Core–Shell Heterostructure and 3D-Nanocage N-Doped Porous Carbon

Zhipeng Ma; Guangjie Shao; Yuqian Fan; Mengya Feng; Dejiu Shen; Huijuan Wang


Electrochimica Acta | 2014

Cupric ion substituted LiFePO4/C composites with enhanced electrochemical performance for Li-ion batteries

Zhipeng Ma; Yuqian Fan; Guangjie Shao; Lin Wang; Jianjun Song; Guiling Wang; Tingting Liu

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