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Dive into the research topics where Erika Fiset is active.

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Featured researches published by Erika Fiset.


Chemsuschem | 2012

Changes in surface chemistry of carbon materials upon electrochemical measurements and their effects on capacitance in acidic and neutral electrolytes

Denisa Hulicova-Jurcakova; Erika Fiset; Gao Qing Max Lu; Teresa J. Bandosz

Four porous carbon samples with very similar porosities but visible differences in their surface chemistry are investigated as supercapacitor electrodes in 1 M H₂SO₄ and 3 M NaCl. The key objective is to monitor the changes to the oxygen- and nitrogen-containing functionalities in oxygen- and nitrogen+oxygen-rich carbons upon a three-electrode test and the effect of these changes on the energy storage capacity in a real two-electrode supercapacitor setup. The carbon samples are thoroughly characterized by nitrogen sorption measurements, Raman spectroscopy, potentiometric titrations, elemental analysis, and synchrotron XPS. The findings presented in this work imply that the pretreatment of the oxygen- and nitrogen+oxygen-rich carbons under the conditions of the three-electrode test in an acidic electrolyte are beneficial to the overall energy storage capacity as the pores become more accessible to the electrolyte ions and the contribution of pseudocapacitive oxygen-containing groups increases in the oxygen-rich carbons, whereas favorable changes to the electronic structure take place in the nitrogen+oxygen-rich carbons. Thus, the total capacitance increases as a result of the improved double-layer capacitance as well as pseudocapacitance. Greater capacitance after the three-electrode test is also measured in a neutral electrolyte for both sets of samples, which is a result of improved double-layer capacitance upon the removal of some oxygen-containing functional groups that leads to better accessibility of the pores.


Electrochemistry Communications | 2009

Double-layer capacitance of waste coffee ground activated carbons in an organic electrolyte

Thomas E. Rufford; Denisa Hulicova-Jurcakova; Erika Fiset; Zhonghua Zhu; Gao Qing Lu


Polymer | 2009

Synthesis, characterization and modification of azide-containing dendronized diblock copolymers

Erika Fiset; Jean-François Morin


Biosensors and Bioelectronics | 2016

Bidirectional microbial electron transfer: Switching an acetate oxidizing biofilm to nitrate reducing conditions

Narcís Pous; Alessandro A. Carmona-Martínez; Anna Vilajeliu-Pons; Erika Fiset; Lluís Bañeras; Eric Trably; M. Dolors Balaguer; Jesús Colprim; Nicolas Bernet; Sebastià Puig


Journal of Materials Chemistry | 2012

Formation of graphitic tubules from ordered mesoporous carbon and their effect on supercapacitive energy storage

Jiansheng Li; Erika Fiset; Jie Yang; Pei Yuan; Xiaofeng Ling; Denisa Hulicova-Jurcakova; Chengzhong Yu; Lianjun Wang


Carbon | 2015

Comparison of melamine resin and melamine network as precursors for carbon electrodes

Erika Fiset; Thomas E. Rufford; Mykola Seredych; Teresa J. Bandosz; Denisa Hulicova-Jurcakova


Journal of Bioremediation and Biodegradation | 2015

Modified Carbon Electrodes: A New Approach for Bioelectrochemical Systems

Erika Fiset; Sebastià Puig


Journal of Solid State Electrochemistry | 2014

Effects of structural properties of silicon carbide-derived carbons on their electrochemical double-layer capacitance in aqueous and organic electrolytes

Erika Fiset; Jun-Seok Bae; Thomas E. Rufford; Suresh K. Bhatia; Gao Qing Lu; Denisa Hulicova-Jurcakova


Archive | 2014

Biomass-derived carbon electrodes for electrochemical double-layer capacitors

Thomas E. Rufford; Erika Fiset; Denisa Hulicova-Jurcakova; Zhonghua Zhu


Materials today communications | 2015

Poly(vinylidene fluoride) as a porogen to prepare nitrogen-enriched porous carbon electrode materials from pyrolysis of melamine resin

Erika Fiset; Thomas E. Rufford; Denisa Hulicova-Jurcakova

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Gao Qing Lu

University of Queensland

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Zhonghua Zhu

University of Queensland

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Chengzhong Yu

University of Queensland

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Jie Yang

University of Queensland

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Jun-Seok Bae

University of Queensland

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