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Supercapacitors Based on Carbon or Pseudocapacitive Materials

2017
Electrochemical capacitors are electrochemical energy storage devices able to quickly deliver or store large quantities of energy. They have stimulated numerous innovations throughout the last 20 years and are now implemented in many fields. Supercapacitors Based on Carbon or Pseudocapacitive Materials provides the scientific basis for a better ...
Simon, Patrice   +2 more
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Electrochemical Capacitors Based on Pseudocapacitance

1999
Double-layer-type electrochemical capacitors are complemented by capacitors based on so-called pseudocapacitance, which arises in some electrosorption processes and in redox reactions at electrode surfaces or oxide films, e.g., RuO2, IrO2, Co3O4. The significance of the term and phenomenon referred to as “pseudocapacitance” has not been well understood
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Pseudocapacitive Lithium Storage in TiO2(B)

Chemistry of Materials, 2005
Phase-pure TiO2(B) with microfibrous morphology was prepared via a newly developed method from amorphous TiO2. Cyclic voltammetry evidences that Li-insertion into TiO2(B) is governed by a pseudocapacitive faradaic process, whose rate is not limited by solid-state diffusion of Li+ in a broad interval of scan rates. This unusual behavior was discussed in
Zukalova, Marketa   +4 more
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Pseudocapacitance: An Introduction

2023
Anit Joseph, Tiju Thomas
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The Pseudocapacitance Behaviors of TiO2 (Anatase) Nanoparticles

ECS Transactions, 2008
Nanocrystalline TiO2 (anatase) was studied over a particle size regime where both capacitive and lithium intercalation processes contribute to the total stored charge. Both the total stored charge (gravimetrically normalized) and the capacitive contribution to the stored charge increase with decreasing particle size.
John Wang   +4 more
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Pseudocapacitive Materials

2022
Jingjing Cao, Wei Wang
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Pseudocapacitive Materials for Electrolytes

2023
Lucia Díaz-Patiño   +3 more
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Emerging Pseudocapaciting Materials

2023
Muhammad Abdullah   +3 more
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Pseudocapacitive Materials for Flexible Supercapacitors

2023
Fang Cheng, Xiaoping Yang, Wen Lu
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