Cellulose is a biodegradable and renewable material that is one of the most abundant biopolymers with many different applications from low value newsprint products to high value biomedical sensor devices. In the last years, the demand of functionalized cellulose for the development of new packaging materials was constantly rising. In this study, a new two-step method for surface functionalization of cellulose sheets and fibers involving oxidation by 2,2,6,6-tetramethylpiperidinyloxyl (TEMPO) followed by coupling of different proteins was investigated. The cellulose oxidation was monitored via FT-IR at 1610 cm−1, photometrically via toluidine blue staining and via titration for the determination of the –COOH group concentration. TEMPO oxidat...
Bacterial cellulose (BC) with increased hydrophobicity is required for several applications includin...
A majority of the polymers obtained from fossil fuels are synthetic and microorganisms do not posses...
2,2,6,6-Tetramethylpiperidine 1-oxyl (TEMPO) oxidized cellulose has quickly become a highly utilized...
Cellulose is an abundant biopolymer found in many different organisms ranging from microbes to plant...
Surface engineering is a widely utilized tool for applications of lignocellusic materials. These met...
Petroleum-based synthetic plastics play an important role in our life. As the detrimental health and...
An innovative method has been developed for the surface hydrophobisation of cellulose-based material...
One central problem for the function and manufacture of materials where performance relies on nanosc...
The present work describes an innovative method for the hydrophobization of cellulosic material by i...
In this present work, terminal amino-functionalized nanocrystalline cellulose derivatives were prepa...
In this work, we investigate the oxidation reaction conditions for bacterial cellulose and the physi...
The non-stop use of petroleum-based materials such as plastics can generate significant environmenta...
A new, industrially feasible method for conferring cellulosic substrates antioxidant properties by u...
The interest in new environmentally friendly cellulose‐based productshas increased tremendously over...
Recently, bacterial cellulose and related materials attracted significant attention for applications...
Bacterial cellulose (BC) with increased hydrophobicity is required for several applications includin...
A majority of the polymers obtained from fossil fuels are synthetic and microorganisms do not posses...
2,2,6,6-Tetramethylpiperidine 1-oxyl (TEMPO) oxidized cellulose has quickly become a highly utilized...
Cellulose is an abundant biopolymer found in many different organisms ranging from microbes to plant...
Surface engineering is a widely utilized tool for applications of lignocellusic materials. These met...
Petroleum-based synthetic plastics play an important role in our life. As the detrimental health and...
An innovative method has been developed for the surface hydrophobisation of cellulose-based material...
One central problem for the function and manufacture of materials where performance relies on nanosc...
The present work describes an innovative method for the hydrophobization of cellulosic material by i...
In this present work, terminal amino-functionalized nanocrystalline cellulose derivatives were prepa...
In this work, we investigate the oxidation reaction conditions for bacterial cellulose and the physi...
The non-stop use of petroleum-based materials such as plastics can generate significant environmenta...
A new, industrially feasible method for conferring cellulosic substrates antioxidant properties by u...
The interest in new environmentally friendly cellulose‐based productshas increased tremendously over...
Recently, bacterial cellulose and related materials attracted significant attention for applications...
Bacterial cellulose (BC) with increased hydrophobicity is required for several applications includin...
A majority of the polymers obtained from fossil fuels are synthetic and microorganisms do not posses...
2,2,6,6-Tetramethylpiperidine 1-oxyl (TEMPO) oxidized cellulose has quickly become a highly utilized...