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Dive into the research topics where Cheng Xiaoliang is active.

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Featured researches published by Cheng Xiaoliang.


Chinese Science Bulletin | 2016

Fabrication and characterization analysisof flexible porous nitrogen-doped carbon-based supercapacitor electrodes

Song Yu; Meng Bo; Chen Xuexian; Chen Haotian; Han Mengdi; Cheng Xiaoliang; Zhang Haixia

Supercapacitor as a new-type energy storage device has attracted increasing interests, because it can provide substantially higher specific/volumetric energy density compared to conventional capacitors, and higher power density and longer cycling lifetime compared to Li-ion batteries. Therefore, it shows great promise as green energy storage device for back-up energy systems and electronic vehicles. Among all kinds of supercapacitors, flexible solid-state supercapacitor, which consists of flexible electrodes, solid-state electrolyte and separator, has attracted much attention due to its potential abilities in wearable electronics and flexible devices. Numerous efforts have been devoted to fabricate flexible electrodes because the fundamental limit of energy storage capability is largely determined by the electrode material. Therefore, how to fabricate suitable flexible electrodes alerts significant influence on supercapacitors’ performance. Compared to pseudocapacitive materials, carbon-based materials have been widely investigated for flexible electrodes due to their good electrical conductivity, excellent cycling stability, high power density and outstanding mechanical properties. In this work, an effective and feasible method to fabricate carbon-based electrode for the fabrication of flexible and high-performance supercapacitors has been proposed. In order to find the relatively suitable electrode, samples under different experimental conditions have been tested and analyzed systematically. Through the simultaneous activation and carbonization process of the biomass-derived natural silk, all of these carbon-based electrodes have a few features, like hierarchical porous, rich N-doped and carbon nanosheet structure. The as-obtained electrodes show favorable capabilities for electrochemical energy storage. The specific/mass capacitor of the best carbon-based electrode can achieve 226 mF/cm2 and 26 F/g, respectively, and the equivalent series resistance of it is only 4 W , thus showing satisfactory electrochemical performance. In conclusion, the excellent capacitance performance of the ultralight and flexible nanomaterials makes them promising candidates as electrode materials. Attributed to the good flexibility and ultralight weight, this proposed electrodes can be directly fabricated into flexible solid-state supercapacitor without any binder and conductive agents.


Archive | 2015

High-performance frictional generator and preparation method thereof

Zhang Haixia; Cheng Xiaoliang; Meng Bo; Han Mengdi; Chen Haotian; Su Zongming


Archive | 2016

Self-charging energy device based on piezoelectric supercapacitor and fabrication method of self-charging energy device

Zhang Haixia; Song Yu; Meng Bo; Cheng Xiaoliang; Chen Haotian


Archive | 2016

Friction generator and supercapacitor integration based self-charging energy unit and manufacturing method therefor

Zhang Haixia; Song Yu; Cheng Xiaoliang; Huang Jiahuan; Chen Xuexian


Archive | 2014

Friction type generator collecting biological kinetic energy and application method thereof

Zhang Haixia; Cheng Xiaoliang; Meng Bo; Zhang Xiaosheng; Han Mengdi; Su Zongming; Liu Wen


Archive | 2014

Friction generator based on existing floors

Zhang Haixia; Cheng Xiaoliang; Meng Bo; Zhang Xiaosheng; Han Mengdi; Liu Wen; Zhu Fuyun


Archive | 2017

Preparation method of porous-structure stretchable elastomer

Zhang Haixia; Su Zongming; Cheng Xiaoliang; Chen Haotian; Song Yu


Archive | 2017

Micro-flow control liquid or air bubble detection device and method based on solid-liquid friction

Zhang Haixia; Cheng Xiaoliang; Miao Liming; Song Yu; Chen Haotian


Archive | 2017

Energy management system suitable for friction power generator based on LC oscillation

Zhang Haixia; Cheng Xiaoliang; Miao Liming; Song Yu


Nanoscale | 2017

P(VDF TrFE)ナノファイバーに基づく波形流ハイブリッド圧電と摩擦電気ナノ発電機【Powered by NICT】

Chen Xuexian; Han Mengdi; Chen Haotian; Cheng Xiaoliang; Song Yu; Su Zongming; Jiang Yonggang; Zhang Haixia

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Zhang Min

Chinese Academy of Sciences

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