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Featured researches published by Yunxia Guo.


Journal of Materials Chemistry C | 2013

Laminated magnetic graphene with enhanced electromagnetic wave absorption properties

Xin Sun; Jianping He; Guoxian Li; Jing Tang; Tao Wang; Yunxia Guo; Hairong Xue

Graphene is highly desirable as an electromagnetic wave absorber because of its high dielectric loss and low density. Nevertheless, pure graphene is found to be non-magnetic and contributes to microwave energy absorption mostly because of its dielectric loss, and the electromagnetic parameters of pure graphene, which are out of balance, result in a bad impedance matching characteristic. In this paper, we report a facile solvothermal route to synthesize laminated magnetic graphene. The results show that there have been significant changes in the electromagnetic properties of magnetic graphene when compared with pure graphene. Especially the dielectric Cole–Cole semicircle suggests that there are Debye relaxation processes in the laminated magnetic graphene, which prove beneficial to enhance the dielectric loss. We also proposed an electromagnetic complementary theory to explain how laminated magnetic graphene, with the combined advantages of graphene and magnetic particles, helps to improve the standard of impedance matching for electromagnetic wave absorbing materials. Besides, microwave absorption properties indicate that the reflection loss of the as-prepared composite is below −10 dB (90% absorption) at 10.4–13.2 GHz with a coating layer thickness of 2.0 mm. This further confirms that the nanoscale surface modification of magnetic particles on graphene makes graphene-based composites have a certain research value in electromagnetic wave absorption.


Journal of Materials Chemistry | 2012

Structural and electrochemical characterization of ordered mesoporous carbon-reduced graphene oxide nanocomposites

Xin Sun; Jianping He; Jing Tang; Tao Wang; Yunxia Guo; Hairong Xue; Guoxian Li; Yiou Ma

Ordered mesoporous carbon-reduced graphene oxide (OMC-RGO) composites were prepared using a solvent evaporation induced self-assembly method. We proposed a novel theory called Hanger–Bridge theory to explain how mesoporous carbon prevents RGO from agglomerating, and the RGO enhances the conductivity of mesoporous carbon as well as helping to load more Pt particles. The as-prepared OMC-RGO composites were used as catalyst supports to deposit Pt nanoparticles and facilitate electrocatalytic reactions as well. Furthermore, we discussed the structure and electrochemical performance differences between OMC supported Pt (OMC/Pt) and OMC-RGO supported Pt (OMC-RGO/Pt). Cyclic voltammetry measurements suggest that OMC-RGO/Pt shows an excellent electrochemical active area (6.81 times as big as OMC/Pt), enhanced catalytic activity towards methanol oxidation (6.67 times the highest current density than OMC/Pt), which could be attributed to the unique nanostructure of the catalyst: a high mesoporous structure and the conductivity of the composites, and highly distributed Pt nanoparticles.


Journal of Materials Chemistry | 2011

Fabrication of unique stripe-shaped mesoporous TiO2 films and their performance as a novel photo-assisted catalyst support for DMFCs

Shichao Wu; Jianping He; Jianhua Zhou; Tao Wang; Yunxia Guo; Jianqing Zhao; Xiaochun Ding

The mesoporous TiO2 films with stripe-shaped mesochannels running parallel to substrates were prepared on the FTO glass by an EISA method and studied as the catalyst support material for DMFCs, combing electrocatalysis with photocatalysis innovatively.


Journal of Physical Chemistry C | 2011

Facile Synthesis for LiFePO4 Nanospheres in Tridimensional Porous Carbon Framework for Lithium Ion Batteries

Jianqing Zhao; Jianping He; Jianhua Zhou; Yunxia Guo; Tao Wang; Shicao Wu; Xiaochun Ding; Ruiming Huang; Hairong Xue


Journal of Physical Chemistry C | 2013

Synthesis and Electrochemical Characterization of N-Doped Partially Graphitized Ordered Mesoporous Carbon–Co Composite

Jing Tang; Tao Wang; Xuchen Pan; Xin Sun; Xiaoli Fan; Yunxia Guo; Hairong Xue; Jianping He


Microporous and Mesoporous Materials | 2013

Effect of transition metal on catalytic graphitization of ordered mesoporous carbon and Pt/metal oxide synergistic electrocatalytic performance

Jing Tang; Tao Wang; Xin Sun; Yunxia Guo; Hairong Xue; Hu Guo; Mingzhu Liu; Xiaoxue Zhang; Jianping He


Journal of Solid State Chemistry | 2010

Microwave absorption properties and infrared emissivities of ordered mesoporous C-TiO2 nanocomposites with crystalline framework

Tao Wang; Jianping He; Jianhua Zhou; Jing Tang; Yunxia Guo; Xiaochun Ding; Shichao Wu; Jianqing Zhao


Journal of Alloys and Compounds | 2011

Design of mesostructured γ-Fe2O3/carbon nanocomposites for electromagnetic wave absorption applications

Jianhua Zhou; Jianping He; Tao Wang; Guoxian Li; Yunxia Guo; Jianqing Zhao; Yiou Ma


Journal of Power Sources | 2012

Synthesis of ordered mesoporous boron-containing carbon films and their corrosion behavior in simulated proton exchange membrane fuel cells environment

Tao Wang; ChuanXiang Zhang; Xin Sun; Yunxia Guo; Hu Guo; Jing Tang; Hairong Xue; Mingzhu Liu; Xiaoxue Zhang; Lei Zhu; Qiaoqiao Xie; Jianping He


Microporous and Mesoporous Materials | 2010

Electromagnetic wave absorption and infrared camouflage of ordered mesoporous carbon-alumina nanocomposites

Tao Wang; Jianping He; Jianhua Zhou; Xiaochun Ding; Jianqing Zhao; Shichao Wu; Yunxia Guo

Collaboration


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Jianping He

Nanjing University of Aeronautics and Astronautics

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Tao Wang

Nanjing University of Aeronautics and Astronautics

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Jing Tang

Nanjing University of Aeronautics and Astronautics

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Hairong Xue

Nanjing University of Aeronautics and Astronautics

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Guoxian Li

Nanjing University of Aeronautics and Astronautics

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Xin Sun

Nanjing University of Aeronautics and Astronautics

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Jianhua Zhou

Nanjing University of Aeronautics and Astronautics

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Jianqing Zhao

Nanjing University of Aeronautics and Astronautics

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Xiaochun Ding

Nanjing University of Aeronautics and Astronautics

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Shichao Wu

Nanjing University of Aeronautics and Astronautics

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