Cellulose-based hydrogels in flexible supercapacitors: A sustainable approach for energy storage solutions

Author:

Azmi Nurul Izzah,Wan Abdul Karim Ghani Wan AzlinaORCID,Sobri Shafreeza,Haris Nur Izzah Nabilah,Kamsani Noor’AinORCID,Alias Azil Bahari

Funder

Malaysia Ministry of Higher Education

Publisher

Elsevier BV

Reference310 articles.

1. An environment-friendly strategy to prepare oxygen-nitrogen-sulfur doped mesopore-dominant porous carbons for symmetric supercapacitors;Liu;Fuel (Guildf),2023

2. Environment-friendly approach for synthesis of promising porous carbon: empowering supercapacitors for a sustainable future;Dhapola;Mater Adv,2024

3. Stretchable and environment-resistant doubly crosslinked hydrogel for all-in-one supercapacitor and strain sensors;Liu;J. Mater.,2024

4. Self-discharge suppression by composite regenerated cellulose ion-selective separator for high-energy aqueous supercapacitors;Huang;Int J Biol Macromol,2024

5. Smart-textile supercapacitor for wearable energy storage system;Khan;J Energy Storage,2023

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