Self-Template Synthesis of Pitch-Based Hierarchical Porous Carbon for High Performance Supercapacitor in Aqueous and Ionic Liquid Electrolytes

Author:

wang kai,Dong Xiaozhong,Yan Rui,Jia Shuai,Cui Baoyin,Zhao Qing,Song Yan

Publisher

Elsevier BV

Reference56 articles.

1. Enhanced light-responsive supercapacitor utilizing BiVO 4 and date leaves-derived carbon: A leap towards sustainable energy harvesting and storage;S S Shah;J Power Sour,2024

2. To Be or Not to Be Pseudocapacitive;T Brousse;J. Electrochem. Soc,2015

3. A comprehensive review on optimization of hybrid renewable energy systems using various optimization techniques;M Thirunavukkarasu;Renew. Sust. Energ. Rev,2023

4. A high-energy asymmetric supercapacitor based on Tomato-leaf-derived hierarchical porous activated carbon and electrochemically deposited Polyaniline electrodes for battery-Free Heart-Pulse-rate monitoring;M A Aziz;Small,2023

5. High-performance discarded separator-based activated carbon for the application of supercapacitors;X Zhang;J. Energy Storage,2021

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