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Featured researches published by Zhe Gui.


ACS Nano | 2013

Natural Cellulose Fiber as Substrate for Supercapacitor

Zhe Gui; Hongli Zhu; Eleanor Gillette; Xiaogang Han; Gary W. Rubloff; Liangbing Hu; Sang Bok Lee

Cellulose fibers with porous structure and electrolyte absorption properties are considered to be a good potential substrate for the deposition of energy material for energy storage devices. Unlike traditional substrates, such as gold or stainless steel, paper prepared from cellulose fibers in this study not only functions as a substrate with large surface area but also acts as an interior electrolyte reservoir, where electrolyte can be absorbed much in the cellulose fibers and is ready to diffuse into an energy storage material. We demonstrated the value of this internal electrolyte reservoir by comparing a series of hierarchical hybrid supercapacitor electrodes based on homemade cellulose paper or polyester textile integrated with carbon nanotubes (CNTs) by simple solution dip and electrodeposited with MnO2. Atomic layer deposition of Al2O3 onto the fiber surface was used to limit electrolyte absorption into the fibers for comparison. Configurations designed with different numbers of ion diffusion pathways were compared to show that cellulose fibers in paper can act as a good interior electrolyte reservoir and provide an effective pathway for ion transport facilitation. Further optimization using an additional CNT coating resulted in an electrode of paper/CNTs/MnO2/CNTs, which has dual ion diffusion and electron transfer pathways and demonstrated superior supercapacitive performance. This paper highlights the merits of the mesoporous cellulose fibers as substrates for supercapacitor electrodes, in which the water-swelling effect of the cellulose fibers can absorb electrolyte, and the mesoporous internal structure of the fibers can provide channels for ions to diffuse to the electrochemical energy storage materials.


Physical Chemistry Chemical Physics | 2011

MnO2/TiN heterogeneous nanostructure design for electrochemical energy storage

Stefanie A. Sherrill; Jonathon Duay; Zhe Gui; Parag Banerjee; Gary W. Rubloff; Sang Bok Lee

MnO(2)/TiN nanotubes are fabricated using facile deposition techniques to maximize the surface area of the electroactive material for use in electrochemical capacitors. Atomic layer deposition is used to deposit conformal nanotubes within an anodic aluminium oxide template. After template removal, the inner and outer surfaces of the TiN nanotubes are exposed for electrochemical deposition of manganese oxide. Electron microscopy shows that the MnO(2) is deposited on both the inside and outside of TiN nanotubes, forming the MnO(2)/TiN nanotubes. Cyclic voltammetry and galvanostatic charge-discharge curves are used to characterize the electrochemical properties of the MnO(2)/TiN nanotubes. Due to the close proximity of MnO(2) with the highly conductive TiN as well as the overall high surface area, the nanotubes show very high specific capacitance (662 F g(-1) reported at 45 A g(-1)) as a supercapacitor electrode material. The highly conductive and mechanically stable TiN greatly enhances the flow of electrons to the MnO(2) material, while the high aspect ratio nanostructure of TiN creates a large surface area for short diffusion paths for cations thus improving high power. Combining the favourable structural, electrical and energy properties of MnO(2) and TiN into one system allows for a promising electrode material for supercapacitors.


Journal of Materials Chemistry | 2015

Dual-template synthesis of ordered mesoporous carbon/Fe2O3 nanowires: high porosity and structural stability for supercapacitors

Junkai Hu; Malachi Noked; Eleanor Gillette; Fudong Han; Zhe Gui; Chunsheng Wang; Sang Bok Lee

Carbon/metal oxide composites are considered promising materials for high energy density supercapacitors. So far, impregnation of the oxide into ordered mesoporous carbon materials has been demonstrated either in hard-templated carbon synthesized by using ordered mesoporous silica or alumina scaffolds, or soft-templated carbon derived from surfactant micelles. The hard-template method can provide a high pore volume but the instability of these mesostructures hinders total electrode performances upon oxide impregnation. While the soft-template methods can provide a stable mesostructure, these methods produce scaffolds with a much smaller pore volume and surface area, leading to limited metal oxide loading and electrode capacitance. Herein, anodized aluminum oxide (AAO) and triblock copolymer F127 are used together as hard and soft-templates to fabricate ordered mesoporous carbon nanowires (OMCNWs) as a host material for Fe2O3 nanoparticles. This dual-template strategy provides a high pore volume and surface area OMCNW that retains its stable structure even for high metal oxide loading amounts. Additionally, the unique nanowire morphology and mesoporous structure of the OMCNW/Fe2O3 facilitate high ionic mobility in the composite, leading to >260 F g−1 specific capacitance with good rate capability and cycling stability. This work highlights the dual-template approach as a promising strategy for the fabrication of next generation heterogeneous composites for electrochemical energy storage and conversion.


ACS Nano | 2013

Self-Limiting Electrodeposition of Hierarchical MnO2 and M(OH)2/MnO2 Nanofibril/Nanowires: Mechanism and Supercapacitor Properties

Jonathon Duay; Stephanie A Sherrill; Zhe Gui; Eleanor Gillette; Sang Bok Lee


Nanoscale | 2016

Dual-template ordered mesoporous carbon/Fe2O3 nanowires as lithium-ion battery anodes

Junkai Hu; Chuan-Fu Sun; Eleanor Gillette; Zhe Gui; YuHuang Wang; Sang Bok Lee


Carbon | 2015

Capacitance behavior of ordered mesoporous carbon/Fe2O3 composites: Comparison between 1D cylindrical, 2D hexagonal, and 3D bicontinuous mesostructures

Junkai Hu; Malachi Noked; Eleanor Gillette; Zhe Gui; Sang Bok Lee


Physical Chemistry Chemical Physics | 2015

Co-electrodeposition of RuO2-MnO2 nanowires and the contribution of RuO2 to the capacitance increase.

Zhe Gui; Eleanor Gillette; Jonathon Duay; Junkai Hu; Nam Kim; Sang Bok Lee


Physical Chemistry Chemical Physics | 2014

Redox-exchange induced heterogeneous RuO2-conductive polymer nanowires

Zhe Gui; Jonathon Duay; Junkai Hu; Sang Bok Lee


ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY | 2013

Mesoporous iron oxide/carbon composite as anode material for electrochemical supercapacitors

Junkai Hu; Zhe Gui; Jonathon Duay; Eleanor Gillette; Sang Bok Lee


ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY | 2013

Template-assisted electrochemical synthesis and growth mechanism of metal nanotubes

Lauren M. Graham; Sung-Kyoung Kim; Seung Il Cho; Zhe Gui; Junkai Hu; Sang Bok Lee

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Parag Banerjee

Washington University in St. Louis

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Chuan-Fu Sun

Chinese Academy of Sciences

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Hongli Zhu

Northeastern University

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Seung Il Cho

Seoul National University

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