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Dive into the research topics where Bruno Gélinas is active.

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Featured researches published by Bruno Gélinas.


ACS Applied Materials & Interfaces | 2017

Air-Stable, Self-Bleaching Electrochromic Device Based on Viologen- and Ferrocene-Containing Triflimide Redox Ionic Liquids

Bruno Gélinas; Dyuman Das; Dominic Rochefort

We demonstrate an electrochromic device with self-bleaching ability that uses ethyl viologen- ([EV]2+) and ferrocene-based redox ionic liquids ([FcNTf]-) as the electroactive species. These electroactive compounds are insensitive to atmospheric O2 and H2O in both their oxidized and reduced states once dissolved in a typical ionic liquid electrolyte ([BMIm][NTf2]), allowing for the device to be assembled outside a glovebox without any encapsulation. This device could generate a deep blue color by the application of a 2.0 V potential between two fluorine-doped tin oxide (FTO) substrates to oxidize the ferrocenyl centers to [FcNTf]0 while reducing viologen to [EV]+•. Self-bleaching occurs at OCP as [EV]+• and [FcNTf]0 undergo homogeneous electron transfer in the electrolyte. The mass transport of ethyl viologen and ferrocenylsulfonyl(trifluoromethylsulfonyl)imide ([FcNTf]-) anion was evaluated by double potential step chronoamperometry to study the impact of the diffusion coefficient on the self-bleaching mechanism. The electrochromic device demonstrated here shows a contrast ΔT (610 nm) around 40% at 2.0 V as colored cell voltage, a switching time in the order of few seconds for coloration and bleaching, coloration efficiency of 105.4 to 146.2 cm2 C1- at 610 nm, and very high stability (94.8% ΔT after 1000 cycles) despite the presence of O2 and H2O in the electrolyte.


Electrochemistry Communications | 2016

Redox-active electrolyte supercapacitors using electroactive ionic liquids

Han Jin Xie; Bruno Gélinas; Dominic Rochefort


Electrochimica Acta | 2015

Synthesis and characterization of an electroactive ionic liquid based on the ferrocenylsulfonyl(trifluoromethylsulfonyl)imide anion

Bruno Gélinas; Dominic Rochefort


Journal of The Electrochemical Society | 2014

Conductivity and Electrochemistry of Ferrocenyl-Imidazolium Redox Ionic Liquids with Different Alkyl Chain Lengths

Bruno Gélinas; John Forgie; Dominic Rochefort


Journal of Physical Chemistry C | 2016

Electrochemical and Transport Properties of Ions in Mixtures of Electroactive Ionic Liquid and Propylene Carbonate with a Lithium Salt for Lithium-Ion Batteries

Bruno Gélinas; Myriann Natali; Thomas Bibienne; Qin Ping Li; Mickael Dollé; Dominic Rochefort


Electrochimica Acta | 2016

Electrochemical and physicochemical properties of redox ionic liquids using electroactive anions: influence of alkylimidazolium chain length

Han Jin Xie; Bruno Gélinas; Dominic Rochefort


Archive | 2013

REDOX-ACTIVE IONIC LIQUIDS

Dominic Rochefort; John Forgie; Dean MacNeil; Bruno Gélinas; Khakani Soumia El


Physical Chemistry Chemical Physics | 2017

Enhancing thermoelectrochemical properties by tethering ferrocene to the anion or cation of ionic liquids: altered thermodynamics and solubility

Leigh Aldous; Jeffrey J. Black; Maximo C. Elias; Bruno Gélinas; Dominic Rochefort


Journal of Power Sources | 2017

Electroactive ionic liquids based on 2,5-ditert-butyl-1,4-dimethoxybenzene and triflimide anion as redox shuttle for Li 4 Ti 5 O 12 /LiFePO 4 lithium-ion batteries

Bruno Gélinas; Thomas Bibienne; Mickael Dollé; Dominic Rochefort


publisher | None

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Han Jin Xie

Université de Montréal

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John Forgie

Université de Montréal

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Mickael Dollé

Centre national de la recherche scientifique

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Dean MacNeil

Université de Montréal

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Jeffrey J. Black

University of New South Wales

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Leigh Aldous

University of New South Wales

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Maximo C. Elias

University of New South Wales

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Mickael Dollé

Centre national de la recherche scientifique

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