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Featured researches published by Jiyuan Liang.


Journal of Nanoscience and Nanotechnology | 2018

In-Situ Template Formation Strategy for the Preparation of Nitrogen Doped Carbon Nanocage with Graphitic Shell as Electrode Material for Supercapacitor

Jinxing Zhao; Chang Liu; Kun Xiang; Qi Cheng; Yuxiao Li; Huan Lin; Kuan-Ting Lee; Liang An; Shun Tang; Yuan-Cheng Cao; Jiyuan Liang

Nitrogen doped carbon nanocage with graphitic shell (NGCS) was fabricated through in-situ solid reaction between calcium acetate and dicyandiamide in an inert atmosphere followed by acid etching. The role played by the calcium acetate (Ca(Ac)2) and dicyandiamide (DCD) during the synthesis process is one-stone-two-birds. Calcium acetate plays multiple functions: template agent, graphitization catalyst, and carbon source. Dicyandiamide can be considered as the nitrogen sources and the chemical reaction agent that can be reacted with calcium acetate to form it into CaCN2. The NGCS obtained at 800 °C has a specific surface area of 420 m2/g and nitrogen content of 8.87 at%. The excellent electrochemical performance can be attributed to the combination effects of porous structure, nitrogen doping and graphitized nanocage shell of NGCS electrode. The hollow structure serves as the reservoir for fast electrolyte ion supplement. Nitrogen groups not only improve the wettability of interfaces between carbon surface and electrolyte, but also generate extra pseudocapacitance through redox reaction. The graphitic carbon nanocage shell can enhance the conductivity and facilitates the fast charge transfer. At a current density of 0.5 A/g, the specific capacitance of the NGCS-800 electrode is 215 F/g. Furthermore, the NGCS-800 electrode exhibits excellent rate capability (80% capacitance retention at 10 A/g) and outstanding cycling stability (96.89% capacitance retention after 5000 cycles). These intriguing results demonstrate that nitrogen doped carbon with graphitic shell will be highly promising as electrode materials for supercapacitors and other energy storage and conversation applications.


Results in physics | 2017

Reduced graphene oxide encapsulated sulfur spheres for the lithium-sulfur battery cathode

Feiyan Liu; Jiyuan Liang; Chang Zhang; Liang Yu; Jinxing Zhao; Chang Liu; Qian Lan; Shengrui Chen; Yuan-Cheng Cao; Guang Zheng


Sensors and Actuators B-chemical | 2017

Preparation of high stable core/shell magnetic nanoparticles and application in Bacillus thuringiensis Cry1Ac proteins detection

Jiyuan Liang; Yuxiang Wu; Cui Liu; Yuan-Cheng Cao; Jun’an Liu; Yongjun Lin


Results in physics | 2017

High rate performance of the carbon encapsulated Li4Ti5O12 for lithium ion battery

Qi Cheng; Shun Tang; Jiyuan Liang; Jinxing Zhao; Qian Lan; Chang Liu; Yuan-Cheng Cao


Ionics | 2017

Preparation of carbon encapsulated Li4Ti5O12 anode material for lithium ion battery through pre-coating method

Qi Cheng; Shun Tang; Chang Liu; Qian Lan; Jinxing Zhao; Jiyuan Liang; Feng Wei; Zuqi Liu; Yuan-Cheng Cao


Materials & Design | 2017

Facile synthesis of Fe3O4@PPy core-shell magnetic nanoparticles and their enhanced dispersity and acid stability

Shun Tang; Qian Lan; Jiyuan Liang; Shengrui Chen; Chang Liu; Jinxing Zhao; Qi Cheng; Yuan-Cheng Cao; Jiyan Liu


Results in physics | 2017

Preparation of Titanium nitride nanomaterials for electrode and application in energy storage

Shun Tang; Qi Cheng; Jinxing Zhao; Jiyuan Liang; Chang Liu; Qian Lan; Yuan-Cheng Cao; Jiyan Liu


Luminescence | 2017

Preparation of carbon quantum dots based high photostability luminescent membranes

Jinxing Zhao; Cui Liu; Yunchuan Li; Jiyuan Liang; Jiyan Liu; Tonghui Qian; Jianjun Ding; Yuan-Cheng Cao


Joule | 2018

Interfaces in Solid-State Lithium Batteries

Lin Xu; Shun Tang; Yu Cheng; Kangyan Wang; Jiyuan Liang; Cui Liu; Yuan-Cheng Cao; Feng Wei; Liqiang Mai


Journal of Alloys and Compounds | 2017

Preparation and electrochemical performance of Li4−xMgxTi5O12 as anode materials for lithium-ion battery

Qi Cheng; Shun Tang; Chang Liu; Qian Lan; Jinxing Zhao; Jiyuan Liang; Ji Yan; Zuqi Liu; Yuan-Cheng Cao

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