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Dive into the research topics where Chenchen Zhao is active.

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Featured researches published by Chenchen Zhao.


Journal of Colloid and Interface Science | 2018

1D ultrafine SnO2 nanorods anchored on 3D graphene aerogels with hierarchical porous structures for high-performance lithium/sodium storage

Yu Wang; Yuhong Jin; Chenchen Zhao; Erzhuang Pan; Mengqiu Jia

SnO2 is considered as one of the most promising alternative anode materials for lithium ion batteries (LIBs) and sodium ion batteries (SIBs) due to high specific capacity, low discharge voltage plateau and environmental friendliness. In this work, 1D ultrafine SnO2 nanorods anchored on 3D graphene aerogel (SnO2 NRs/GA) composite is prepared through a simple reduction-induced self-assembly method in the solution of graphene oxide (GO), Vitamin C and SnO2 nanoparticles. Vitamin C plays an important role in the reduction of GO. The structural and morphological characterizations demonstrate that 1D ultrafine SnO2 nanorods are uniformly and tightly anchored on the surface of 3D graphene nanosheet aerogels. The unique 3D network structure as well as the synergistic effect between 3D graphene nanoshhet and 1D SnO2 nanorods endows the as-prepared SnO2 NRs/GA composite with the good electrochemical lithium/sodium storage performance. It delivers the high initial discharge capacity (1713 mA h g-1 at 0.1 A g-1 for LIBs and 539 mA h g-1 at 0.05 A g-1 for SIBs) and good cycle stability (869 mA h g-1 at 0.1 A g-1 after 50 cycles for LIBs and 232 mA h g-1 at 0.05 A g-1 after 100 cycles for SIBs). Moreover, the SnO2 NRs/GA composite exhibits excellent cycle stability for SIBs with a high reversible capacity of 96 mA h g-1 at as high as 1 A g-1 for 500 cycles. This work provides a simple method to fabricate the electro-active materials-graphene aerogel composites for high-performance LIBs and SIBs.


Materials Letters | 2017

SnO2 quantum dots/graphene aerogel composite as high-performance anode material for sodium ion batteries

Yu Wang; Yuhong Jin; Chenchen Zhao; Yuhao Duan; Xinzi He; Mengqiu Jia


International Journal of Hydrogen Energy | 2018

Preparation of mesoporous Ni2P nanobelts with high performance for electrocatalytic hydrogen evolution and supercapacitor

Yuhong Jin; Chenchen Zhao; Li Wang; Qianlei Jiang; Changwei Ji; Xiangming He


Microporous and Mesoporous Materials | 2018

Facile synthesis of mesoporous 3D CoO/nitrogen-doped graphene aerogel as high-performance anode materials for lithium storage

Erzhuang Pan; Yuhong Jin; Yu Wang; Chenchen Zhao; Xin Bo; Mengqiu Jia


Materials Letters | 2018

Preparation and electrochemical capacitive performance of hollow urchin-like Ni 2 P/CoP bimetallic phosphides for high-performance supercapacitors

Yuhong Jin; Chenchen Zhao; Qianlei Jiang; Changwei Ji


Journal of Colloid and Interface Science | 2018

Effective dispersion of multi-walled carbon nanotubes in aqueous solution using an ionic-gemini dispersant

Jiangtao Hou; Wenbo Du; Fanjing Meng; Chenchen Zhao; Xian Du


International Journal of Hydrogen Energy | 2018

PdCo bimetallic nano-electrocatalyst as effective air-cathode for aqueous metal-air batteries

Chenchen Zhao; Xingxu Yan; Guoqing Wang; Yuhong Jin; Xian Du; Wenbo Du; Ling Sun; Changwei Ji


Ionics | 2017

Large-scale production of Cu 3 P nanocrystals for ultrahigh-rate supercapacitor

Yuhong Jin; Chenchen Zhao; Yu Wang; Qianlei Jiang; Changwei Ji; Mengqiu Jia


Materials Chemistry and Physics | 2018

One-step synthesis of self-supported Ni x P nanowires/Ni hybrid foam as battery-like electrode for high-performance supercapacitors

Yuhong Jin; Chenchen Zhao; Qianlei Jiang; Changwei Ji


Journal of Power Sources | 2018

In situ prepared amorphous FeCoO-Polyaniline/multiwalled carbon nanotube nanohybrids as efficient oxygen evolution catalysts for rechargeable Zn-air batteries

Chenchen Zhao; Yuhong Jin; Xian Du; Wenbo Du

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Yuhong Jin

Beijing University of Technology

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Changwei Ji

Beijing University of Technology

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Mengqiu Jia

Beijing University of Chemical Technology

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Erzhuang Pan

Beijing University of Chemical Technology

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Qianlei Jiang

Beijing University of Technology

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Yu Wang

Beijing University of Chemical Technology

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Wenbo Du

Beijing University of Technology

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Xian Du

Beijing University of Technology

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Qianqian Chang

Beijing University of Chemical Technology

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Fanjing Meng

Beijing University of Technology

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