Architecture engineering of hierarchically porous chitosan/vacuum-stripped graphene scaffold as bioanode for high performance microbial fuel cell
The bioanode is the defining feature of microbial fuel cell (MFC) technology and often limits its performance. In the current work, we report the engineering of a novel hierarchically porous architecture as an efficient bioanode, consisting of biocompatible chitosan and vacuum-stripped graphene (CHI...
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sg-ntu-dr.10356-971572020-03-07T11:35:36Z Architecture engineering of hierarchically porous chitosan/vacuum-stripped graphene scaffold as bioanode for high performance microbial fuel cell He, Ziming Liu, Jing Qiao, Yan Li, Chang Ming Tan, Thatt Yang Timothy School of Chemical and Biomedical Engineering The bioanode is the defining feature of microbial fuel cell (MFC) technology and often limits its performance. In the current work, we report the engineering of a novel hierarchically porous architecture as an efficient bioanode, consisting of biocompatible chitosan and vacuum-stripped graphene (CHI/VSG). With the hierarchical pores and unique VSG, an optimized bioanode delivered a remarkable maximum power density of 1530 mW m–2 in a mediator-less MFC, 78 times higher than a carbon cloth anode. 2013-07-02T03:19:00Z 2019-12-06T19:39:29Z 2013-07-02T03:19:00Z 2019-12-06T19:39:29Z 2012 2012 Journal Article He, Z., Liu, J., Qiao, Y., Li, C. M., & Tan, T. Y. T. (2012). Architecture engineering of hierarchically porous chitosan/vacuum-stripped graphene scaffold as bioanode for high performance microbial fuel cell. Nano letters, 12(9), 4738–4741. 1530-6984 https://hdl.handle.net/10356/97157 http://hdl.handle.net/10220/10883 10.1021/nl302175j en Nano letters © 2012 American Chemical Society. |
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The bioanode is the defining feature of microbial fuel cell (MFC) technology and often limits its performance. In the current work, we report the engineering of a novel hierarchically porous architecture as an efficient bioanode, consisting of biocompatible chitosan and vacuum-stripped graphene (CHI/VSG). With the hierarchical pores and unique VSG, an optimized bioanode delivered a remarkable maximum power density of 1530 mW m–2 in a mediator-less MFC, 78 times higher than a carbon cloth anode. |
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School of Chemical and Biomedical Engineering |
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School of Chemical and Biomedical Engineering He, Ziming Liu, Jing Qiao, Yan Li, Chang Ming Tan, Thatt Yang Timothy |
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He, Ziming Liu, Jing Qiao, Yan Li, Chang Ming Tan, Thatt Yang Timothy |
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He, Ziming Liu, Jing Qiao, Yan Li, Chang Ming Tan, Thatt Yang Timothy Architecture engineering of hierarchically porous chitosan/vacuum-stripped graphene scaffold as bioanode for high performance microbial fuel cell |
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He, Ziming |
title |
Architecture engineering of hierarchically porous chitosan/vacuum-stripped graphene scaffold as bioanode for high performance microbial fuel cell |
title_short |
Architecture engineering of hierarchically porous chitosan/vacuum-stripped graphene scaffold as bioanode for high performance microbial fuel cell |
title_full |
Architecture engineering of hierarchically porous chitosan/vacuum-stripped graphene scaffold as bioanode for high performance microbial fuel cell |
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Architecture engineering of hierarchically porous chitosan/vacuum-stripped graphene scaffold as bioanode for high performance microbial fuel cell |
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Architecture engineering of hierarchically porous chitosan/vacuum-stripped graphene scaffold as bioanode for high performance microbial fuel cell |
title_sort |
architecture engineering of hierarchically porous chitosan/vacuum-stripped graphene scaffold as bioanode for high performance microbial fuel cell |
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2013 |
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https://hdl.handle.net/10356/97157 http://hdl.handle.net/10220/10883 |
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