A confined nanocrystal-in-nanofiber architecture: stabilizing high-entropy oxide nanoparticles in carbon nanofibers for superior lithium storage | Synapse
The study aims to develop a structural engineering approach to enhance lithium storage in carbon nanofibers using high-entropy oxide nanoparticles.
Developed a nanocrystal-in-nanofiber architecture to incorporate high-entropy oxide nanoparticles into carbon nanofibers.
Analyzed structural stability and performance of the engineered nanofibers under lithium storage conditions.
Carbon nanofibers demonstrated improved performance for lithium storage with stabilized nanoparticles.
The architecture reduced degradation of entropy-stabilized oxides, contributing to overall durability.
Abstract
. This work establishes a versatile structural engineering paradigm for mitigating the degradation of entropy-stabilized oxides, paving the way for durable high-energy storage devices.