In view of a great demand for paper-based technologies, nonwettable fibrous substrates with excellent durability have drawn much attention in recent years. In this context, the use of cellulose nanofibers (CNFs), the smallest unit of cellulosic substrates (5–20 nm wide and 500 nm to several microns in length), to design waterproof paper can be an economical and smart approach. In this study, an eco-friendly and facile methodology to develop a multifunctional waterproof paper <i>via</i> the fabrication of fluoroalkyl functionalized CNFs in the aqueous medium is presented. This strategy avoids the need for organic solvents, thereby minimizing cost as well as reducing safety and environmental concerns. Besides, it widens the applicability of s...
Abstract Owing to the intrinsic hydrophilicity of nanocellulose, films and nanopapers prepared from...
Cellulose nanopaper (CNP) features appealing properties, including transparency, flatness, a low the...
Cellulose nanopaper (CNP) features appealing properties, including transparency, flatness, a low the...
In view of a great demand for paper-based technologies, nonwettable fibrous substrates with excellen...
In view of a great demand for paper-based technologies, nonwettable fibrous substrates with excellen...
In view of a great demand for paper-based technologies, nonwettable fibrous substrates with excellen...
In view of a great demand for paper-based technologies, nonwettable fibrous substrates with excellen...
In view of a great demand for paper-based technologies, nonwettable fibrous substrates with excellen...
Films of cellulose nanofibrils (CNF) (referred to as nanopaper) present a great potential in many ap...
Researchers in natural fibers see opportunities in superhydrophobicity for fabrics or paper. The fir...
Cellulose nanofibrils (CNFs) prepared from wood biomass are promising candidates to replace oil-base...
Cellulose nanopaper (CNP) features appealing properties, including transparency, flatness, a low the...
Cellulose nanofibrils (CNFs) prepared from wood biomass are promising candidates to replace oil-base...
Abstract The current work reports a novel, completely water based approach to prepare the water res...
Films of cellulose nanofibrils (CNF) (referred to as nanopaper) present a great potential in many ap...
Abstract Owing to the intrinsic hydrophilicity of nanocellulose, films and nanopapers prepared from...
Cellulose nanopaper (CNP) features appealing properties, including transparency, flatness, a low the...
Cellulose nanopaper (CNP) features appealing properties, including transparency, flatness, a low the...
In view of a great demand for paper-based technologies, nonwettable fibrous substrates with excellen...
In view of a great demand for paper-based technologies, nonwettable fibrous substrates with excellen...
In view of a great demand for paper-based technologies, nonwettable fibrous substrates with excellen...
In view of a great demand for paper-based technologies, nonwettable fibrous substrates with excellen...
In view of a great demand for paper-based technologies, nonwettable fibrous substrates with excellen...
Films of cellulose nanofibrils (CNF) (referred to as nanopaper) present a great potential in many ap...
Researchers in natural fibers see opportunities in superhydrophobicity for fabrics or paper. The fir...
Cellulose nanofibrils (CNFs) prepared from wood biomass are promising candidates to replace oil-base...
Cellulose nanopaper (CNP) features appealing properties, including transparency, flatness, a low the...
Cellulose nanofibrils (CNFs) prepared from wood biomass are promising candidates to replace oil-base...
Abstract The current work reports a novel, completely water based approach to prepare the water res...
Films of cellulose nanofibrils (CNF) (referred to as nanopaper) present a great potential in many ap...
Abstract Owing to the intrinsic hydrophilicity of nanocellulose, films and nanopapers prepared from...
Cellulose nanopaper (CNP) features appealing properties, including transparency, flatness, a low the...
Cellulose nanopaper (CNP) features appealing properties, including transparency, flatness, a low the...