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Effects of surface functional groups of coal-tar-pitch-derived nanoporous carbon anodes on microbial fuel cell performance
Yu Chen Liu
, Yu Hsuan Hung
, Sutarsis
, Chia Chieh Hsu
, Chung Sheng Ni
, Tzu Yin Liu
,
Jeng Kuei Chang
, Han Yi Chen
*
*
此作品的通信作者
材料科學與工程學系
研究成果
:
Article
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同行評審
25
引文 斯高帕斯(Scopus)
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Keyphrases
Surface Functional Groups
100%
Carbon Anode
100%
Nanoporous Carbon
100%
Microbial Fuel Cell Performance
100%
Coal Tar pitch
100%
Microbial Fuel Cell
75%
Anode Material
50%
High Performance
25%
Escherichia Coli
25%
Surface Modification
25%
Biocompatibility
25%
High Output Power
25%
Nitrogen Atom
25%
High Electrical Conductivity
25%
Oxygen-containing Functional Groups
25%
Fuel Cell Applications
25%
Oxygen Concentration
25%
Maximum Power Density
25%
Biofilm
25%
Distillation
25%
Coal Tar
25%
Sustainable Anode
25%
Nitrogen Doped Nanoporous Carbons
25%
Engineering
Fuel Cell Performance
100%
Functional Group
100%
Carbon Anode
100%
Microbial Fuel Cell
100%
Tar Pitch
100%
Coal Tar
100%
High Electrical Conductivity
20%
Maximum Power Density
20%
Power Output
20%
Fuel Cell Applications
20%
Nitrogen Atom
20%
Material Science
Anode
100%
Functional Surface
100%
Anode Material
40%
Density
20%
Electrical Conductivity
20%
Biocompatibility
20%
Surface Modification
20%
Biofilms
20%
Chemical Engineering
Functional Group
100%
Microbial Fuel Cell Performance
100%
Maximum Power Density
50%
Oxygen-containing Functional Groups
50%