Biomass-Derived Flexible Carbon Architectures as Self-Supporting Electrodes for Energy Storage
With the swift advancement of the wearable electronic devices industry, the energy storage components of these devices must possess the capability to maintain stable mechanical and chemical properties after undergoing multiple bending or tensile deformations. This circumstance has expedited research...
Váldodahkkit: | Dehong Yang, Peng Xu, Chaofan Tian, Sen Li, Tao Xing, Zhi Li, Xuebin Wang, Pengcheng Dai |
---|---|
Materiálatiipa: | Artihkal |
Giella: | English |
Almmustuhtton: |
MDPI AG
2023-08-01
|
Ráidu: | Molecules |
Fáttát: | |
Liŋkkat: | https://www.mdpi.com/1420-3049/28/17/6377 |
Geahča maid
-
Hydrogel‐Based Flexible Energy Storage Using Electrodes Based on Polypyrrole and Carbon Threads
Dahkki: Jean G. A. Ruthes, et al.
Almmustuhtton: (2023-09-01) -
Bifunctional flexible electrochromic energy storage devices based on silver nanowire flexible transparent electrodes
Dahkki: He Zhang, et al.
Almmustuhtton: (2022-01-01) -
Design, preparation and application of electrodes for flexible energy storage batteries
Dahkki: HUANG Ying, et al.
Almmustuhtton: (2022-04-01) -
Effect of Carbonization Behaviour of Cotton Biomass in Electrodes for Sodium‐Ion Batteries
Dahkki: Hridip Ranjan Sarma, et al.
Almmustuhtton: (2023-07-01) -
Electrode fabrication at liquid interfaces: Towards transparency and flexibility
Dahkki: Ariane Schmidt, et al.
Almmustuhtton: (2022-01-01)