Cellulose-based materials represent a renewable, biodegradable, and environmentally friendly alternative to plastic from fossil resources. Nanopaper is a strong and lightweight material formed from cellulose nanofibrils (CNFs). Paper and nanopaper have been considered as excellent alternatives to plastics for use in agriculture and for packaging applications. However, common for both paper and nanopaper is their hydrophilic character, and consequently, poor water-resistance properties. ORMOCER®s are a class of inorganic–organic polymers with excellent barrier and protective properties used for a range of coating applications. Here we present ORMOCER®-coated paper and nanopaper. The coated papers and nanopapers are characterized, both in ter...
Cellulose nanopapers, known for excellent mechanical properties, loses 90% of their stiffness in the...
Cellulose nanopaper (CNP) features appealing properties, including transparency, flatness, a low the...
Abstracts Cellulose nanopapers are the strongest polymeric material known to us, and in the near fu...
The aim of this study was to assess selected properties of coatings incorporating nanocellulose, wit...
Abstract: Nowadays research is focused on searching materials from natural resources to decrease the...
Polyhydroxyalkanoates (PHAs) comprise a family of biodegradable aliphatic polyesters with enhanced s...
The barrier resistance and wettability of papers are commonly controlled by the application of petro...
Nanocellulose has widely attracted researchers’ attention because of its many interesting characteri...
The increasing usage of petroleum-based compounds has prompted numerous environmental concerns. Cons...
Abstract: In answer to the ban for traditional plastics and need for more sustainable packaging solu...
Abstract The current work reports a novel, completely water based approach to prepare the water res...
In view of a great demand for paper-based technologies, nonwettable fibrous substrates with excellen...
Water hardness not only constitutes a significant hazard for the functionality of water infrastructu...
This study covers a green method to prepare hybrid lignocellulosic nanopapers by combining wood nano...
Cellulose nanofibrils (CNF) are, due in large part to excellent gas barrier properties, a potential ...
Cellulose nanopapers, known for excellent mechanical properties, loses 90% of their stiffness in the...
Cellulose nanopaper (CNP) features appealing properties, including transparency, flatness, a low the...
Abstracts Cellulose nanopapers are the strongest polymeric material known to us, and in the near fu...
The aim of this study was to assess selected properties of coatings incorporating nanocellulose, wit...
Abstract: Nowadays research is focused on searching materials from natural resources to decrease the...
Polyhydroxyalkanoates (PHAs) comprise a family of biodegradable aliphatic polyesters with enhanced s...
The barrier resistance and wettability of papers are commonly controlled by the application of petro...
Nanocellulose has widely attracted researchers’ attention because of its many interesting characteri...
The increasing usage of petroleum-based compounds has prompted numerous environmental concerns. Cons...
Abstract: In answer to the ban for traditional plastics and need for more sustainable packaging solu...
Abstract The current work reports a novel, completely water based approach to prepare the water res...
In view of a great demand for paper-based technologies, nonwettable fibrous substrates with excellen...
Water hardness not only constitutes a significant hazard for the functionality of water infrastructu...
This study covers a green method to prepare hybrid lignocellulosic nanopapers by combining wood nano...
Cellulose nanofibrils (CNF) are, due in large part to excellent gas barrier properties, a potential ...
Cellulose nanopapers, known for excellent mechanical properties, loses 90% of their stiffness in the...
Cellulose nanopaper (CNP) features appealing properties, including transparency, flatness, a low the...
Abstracts Cellulose nanopapers are the strongest polymeric material known to us, and in the near fu...