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Dive into the research topics where Zi-Hang Huang is active.

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Featured researches published by Zi-Hang Huang.


ACS Nano | 2018

High Mass Loading MnO2 with Hierarchical Nanostructures for Supercapacitors

Zi-Hang Huang; Yu Song; Dong-Yang Feng; Zhen Sun; Xiaoqi Sun; Xiao-Xia Liu

Metal oxides have attracted renewed interest as promising electrode materials for high energy density supercapacitors. However, the electrochemical performance of metal oxide materials deteriorates significantly with the increase of mass loading due to their moderate electronic and ionic conductivities. This limits their practical energy. Herein, we perform a morphology and phase-controlled electrodeposition of MnO2 with ultrahigh mass loading of 10 mg cm-2 on a carbon cloth substrate to achieve high overall capacitance without sacrificing the electrochemical performance. Under optimum conditions, a hierarchical nanostructured architecture was constructed by interconnection of primary two-dimensional ε-MnO2 nanosheets and secondary one-dimensional α-MnO2 nanorod arrays. The specific hetero-nanostructures ensure facile ionic and electric transport in the entire electrode and maintain the structure stability during cycling. The hierarchically structured MnO2 electrode with high mass loading yields an outstanding areal capacitance of 3.04 F cm-2 (or a specific capacitance of 304 F g-1) at 3 mA cm-2 and an excellent rate capability comparable to those of low mass loading MnO2 electrodes. Finally, the aqueous and all-solid asymmetric supercapacitors (ASCs) assembled with our MnO2 cathode exhibit extremely high volumetric energy densities (8.3 mWh cm-3 at the power density of 0.28 W cm-3 for aqueous ASC and 8.0 mWh cm-3 at 0.65 W cm-3 for all-solid ASC), superior to most state-of-the-art supercapacitors.


ACS Applied Materials & Interfaces | 2015

Ordered Polypyrrole Nanowire Arrays Grown on a Carbon Cloth Substrate for a High-Performance Pseudocapacitor Electrode

Zi-Hang Huang; Yu Song; Xin-Xin Xu; Xiao-Xia Liu


ACS energy letters | 2017

Ostwald Ripening Improves Rate Capability of High Mass Loading Manganese Oxide for Supercapacitors

Yu Song; Tianyu Liu; Bin Yao; Mingyang Li; Tianyi Kou; Zi-Hang Huang; Dong-Yang Feng; Fuxin Wang; Yexiang Tong; Xiao-Xia Liu; Yat Li


Journal of Power Sources | 2016

Rate capability improvement of polypyrrole via integration with functionalized commercial carbon cloth for pseudocapacitor

Dong-Yang Feng; Yu Song; Zi-Hang Huang; Xin-Xin Xu; Xiao-Xia Liu


Nanoscale | 2017

Balancing the electrical double layer capacitance and pseudocapacitance of hetero-atom doped carbon

Zi-Hang Huang; Tianyu Liu; Yu Song; Yat Li; Xiao-Xia Liu


Electrochimica Acta | 2017

Electrochemical Growth of Polyaniline Nanowire Arrays on Graphene Sheets in Partially Exfoliated Graphite Foil for High-Performance Supercapacitive Materials

Yin-Jian Ye; Zi-Hang Huang; Yu Song; Jin-Wang Geng; Xin-Xin Xu; Xiao-Xia Liu


Chemical Engineering Journal | 2017

Electrochemical deposition of highly loaded polypyrrole on individual carbon nanotubes in carbon nanotube film for supercapacitor

Zhi-Han Chang; Dong-Yang Feng; Zi-Hang Huang; Xiao-Xia Liu


Chemical Engineering Journal | 2019

Boosting operating voltage of vanadium oxide-based symmetric aqueous supercapacitor to 2 V

Zi-Hang Huang; Yu Song; Xiao-Xia Liu


Journal of Power Sources | 2018

Highly loaded manganese oxide with high rate capability for capacitive applications

Dong-Yang Feng; Zhen Sun; Zi-Hang Huang; Xiang Cai; Yu Song; Xiao-Xia Liu


Journal of Materials Research | 2018

Nitrogen-doped carbon “spider webs” derived from pyrolysis of polyaniline nanofibers in ammonia for capacitive energy storage

Yu Song; Zengming Qin; Zi-Hang Huang; Tianyu Liu; Yat Li; Xiao-Xia Liu

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Xiao-Xia Liu

Northeastern University

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Yu Song

Northeastern University

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Xin-Xin Xu

Northeastern University

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Zhen Sun

Northeastern University

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Tianyu Liu

University of California

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Yat Li

University of California

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Xiang Cai

Northeastern University

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Fuxin Wang

Sun Yat-sen University

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