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Graphene Oxide Hybrid with Sulfur-Nitrogen Polymer for High-Performance Pseudocapacitors.
Witomska, Samanta; Liu, Zhaoyang; Czepa, Wlodzimierz; Aliprandi, Alessandro; Pakulski, Dawid; Pawluc, Piotr; Ciesielski, Artur; Samorì, Paolo.
Afiliação
  • Witomska S; Université de Strasbourg , CNRS, ISIS , 8 alleé Gaspard Monge , 67000 Strasbourg , France.
  • Liu Z; Center for Advanced Technologies , Adam Mickiewicz University , Umultowska 89c , 61614 Poznan , Poland.
  • Czepa W; Faculty of Chemistry , Adam Mickiewicz University , Umultowska 89b , 61614 Poznan , Poland.
  • Aliprandi A; Université de Strasbourg , CNRS, ISIS , 8 alleé Gaspard Monge , 67000 Strasbourg , France.
  • Pakulski D; Center for Advanced Technologies , Adam Mickiewicz University , Umultowska 89c , 61614 Poznan , Poland.
  • Pawluc P; Faculty of Chemistry , Adam Mickiewicz University , Umultowska 89b , 61614 Poznan , Poland.
  • Ciesielski A; Université de Strasbourg , CNRS, ISIS , 8 alleé Gaspard Monge , 67000 Strasbourg , France.
  • Samorì P; Université de Strasbourg , CNRS, ISIS , 8 alleé Gaspard Monge , 67000 Strasbourg , France.
J Am Chem Soc ; 141(1): 482-487, 2019 Jan 09.
Article em En | MEDLINE | ID: mdl-30517783
ABSTRACT
Toward the introduction of fast faradaic pseudocapacitive behavior and the increase of the specific capacitance of carbon-based electrodes, we covalently functionalized graphene oxide with a redox active thiourea-formaldehyde polymer, yielding a multifunctional hybrid system. The multiscale physical and chemical characterization of the novel 3-dimensional hybrid revealed high material porosity with high specific surface area (402 m2 g-1) and homogeneous element distribution. The presence of multiple functional groups comprising sulfur, nitrogen, and oxygen provide additional contribution of Faradaic redox reaction in supercapacity performance, leading to a high effective electrochemical pseudocapacitance. Significantly, our graphene-based 3-dimensional thiourea-formaldehyde hybrid exhibited specific capacitance as high as 400 F g-1, areal capacitance of 160 mF cm-2, and an energy density of 11.1 mWh cm-3 at scan rate of 1 mV s-1 with great capacitance retention (100%) after 5000 cycles at scan rate of 100 mV s-1.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: J Am Chem Soc Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: J Am Chem Soc Ano de publicação: 2019 Tipo de documento: Article