Carbon Materials and the Environment


Gunma University
Maebashi, Japón
2022
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Novel designs of carbon electrodes for the technological improvement of electrochemical capacitors
Smart Supercapacitors: Fundamentals, Structures, and Applications (Elsevier), pp. 321-358
2020
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Nitrogen Doped Superactivated Carbons Prepared at Mild Conditions as Electrodes for Supercapacitors in Organic Electrolyte
C-JOURNAL OF CARBON RESEARCH, Vol. 6, Núm. 3
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Nitrogen-Doped Seamless Activated Carbon Electrode with Excellent Durability for Electric Double Layer Capacitor
Journal of the Electrochemical Society, Vol. 167, Núm. 6
2019
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Insight into the origin of carbon corrosion in positive electrodes of supercapacitors
Journal of Materials Chemistry A, Vol. 7, Núm. 13, pp. 7480-7488
2015
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Improvement of carbon materials performance by nitrogen functional groups in electrochemical capacitors in organic electrolyte at severe conditions
Carbon, Vol. 82, Núm. C, pp. 205-213
2014
2012
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Hydrogen storage in CO 2-activated amorphous nanofibers and their monoliths
Carbon, Vol. 50, Núm. 3, pp. 1407-1416
2010
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Amorphous carbon nanofibers and their activated carbon nanofibers as supercapacitor electrodes
Journal of Physical Chemistry C, Vol. 114, Núm. 22, pp. 10302-10307
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Measuring cycle efficiency and capacitance of chemically activated carbons in propylene carbonate
Carbon, Vol. 48, Núm. 5, pp. 1451-1456
2009
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Activation of polymer blend carbon nanofibres by alkaline hydroxides and their hydrogen storage performances
International Journal of Hydrogen Energy, Vol. 34, Núm. 22, pp. 9141-9150
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Amorphous carbon nanofibres inducing high specific capacitance of deposited hydrous ruthenium oxide
Electrochimica Acta, Vol. 54, Núm. 28, pp. 7452-7457
2003
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Influence of pore structure and surface chemistry on electric double layer capacitance in non-aqueous electrolyte
Carbon, Vol. 41, Núm. 9, pp. 1765-1775
1997
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Preparation of general purpose carbon fibers from coal tar pitches with low softening point
Carbon, Vol. 35, Núm. 8, pp. 1079-1087
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Preparation of platinum loaded carbon fiber by using a polymer blend
Carbon
1996
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Preparation and properties of an antibacterial activated carbon fiber containing mesopores
Carbon, Vol. 34, Núm. 1, pp. 53-57
1995
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Formation of mesopores in phenolic resin-derived carbon fiber by catalytic activation using cobalt
Carbon, Vol. 33, Núm. 8, pp. 1085-1090
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Structure and properties of a moulded carbon derived from rice hull
Journal of Materials Science, Vol. 30, Núm. 24, pp. 6249-6252
1994
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Antibacterial activated carbon fiber derived from methyl methacrylate-grafted phenolic resin fiber
Carbon, Vol. 32, Núm. 1, pp. 107-110