Optimizing the desired properties for stretch monolayer separators used in Lithium-ion batteries has been a challenge. In the present study a cellulose nanofiber/PET nonwoven composite separator is successfully fabricated, using a wet-laid nonwoven (papermaking) process, which can attain optimal properties in wettability, mechanical strength, thermal resistance, and electrochemical performance simultaneously. The PET nonwoven material, which is fabricated from ultrafine PET fibers by a wet-laid process, is a mechanical support layer. The porous structure of the composite separator was created by cellulose nanofibers coating the PET in a papermaking process. Cellulose nanofibers (CNFs), which are an eco-friendly sustainable resource, have be...
The development of lithium-ion batteries (LIBs) has been focused on exploring and improving the elec...
The development of lithium-ion batteries (LIBs) has been focused on exploring and improving the elec...
A PI/cellulose composite separator was prepared by adsorbing bacterial cellulose on a PI separator p...
AbstractOptimizing the desired properties for stretch monolayer separators used in Lithium-ion batte...
Eco-friendly cellulose nanofibers (CNFs), a core constituent of cellulose, have garnered increasing ...
High electrolyte wettability, thermal dimensional stability, and tensile strength are prerequisites ...
A renewable and superior thermal-resistant cellulose-based composite nonwoven was explored as lithiu...
Battery separators play a vital role in the safety, sustainability, and electrochemical performance ...
The traditional commercial polyolefin separators suffer from high-temperature thermal shrinkage, low...
In this study, fibrous cellulose membranes were successfully mass produced by forcespinning® cellulo...
In this paper, a single ion polymer electrolyte enhanced cellulose nonwoven separator has been succe...
Bacterial cellulose nanofiber (BCNF) with high thermal stability produced by an ecofriendly process ...
This paper reports an eco-friendly approach for extracting cellulose acetate (CA) from waste cigaret...
Carboxylated cellulose nanofibers, prepared by TEMPO-mediated oxidation (TOCN), were processed into ...
Porous structure-tuned cellulose nanofiber paper separators (designated as S-CNP separators) are dem...
The development of lithium-ion batteries (LIBs) has been focused on exploring and improving the elec...
The development of lithium-ion batteries (LIBs) has been focused on exploring and improving the elec...
A PI/cellulose composite separator was prepared by adsorbing bacterial cellulose on a PI separator p...
AbstractOptimizing the desired properties for stretch monolayer separators used in Lithium-ion batte...
Eco-friendly cellulose nanofibers (CNFs), a core constituent of cellulose, have garnered increasing ...
High electrolyte wettability, thermal dimensional stability, and tensile strength are prerequisites ...
A renewable and superior thermal-resistant cellulose-based composite nonwoven was explored as lithiu...
Battery separators play a vital role in the safety, sustainability, and electrochemical performance ...
The traditional commercial polyolefin separators suffer from high-temperature thermal shrinkage, low...
In this study, fibrous cellulose membranes were successfully mass produced by forcespinning® cellulo...
In this paper, a single ion polymer electrolyte enhanced cellulose nonwoven separator has been succe...
Bacterial cellulose nanofiber (BCNF) with high thermal stability produced by an ecofriendly process ...
This paper reports an eco-friendly approach for extracting cellulose acetate (CA) from waste cigaret...
Carboxylated cellulose nanofibers, prepared by TEMPO-mediated oxidation (TOCN), were processed into ...
Porous structure-tuned cellulose nanofiber paper separators (designated as S-CNP separators) are dem...
The development of lithium-ion batteries (LIBs) has been focused on exploring and improving the elec...
The development of lithium-ion batteries (LIBs) has been focused on exploring and improving the elec...
A PI/cellulose composite separator was prepared by adsorbing bacterial cellulose on a PI separator p...