One of the most common approaches to prepare lignin-based polyurethanes (PUs) is to chemically derivatize lignin to modify its structure and to allow its hydroxyl functions to be more readily available for reaction with isocyanates. However such an approach may reduce the competitive advantage of lignin over conventional systems based on fossil-derived polyols, as chemical modifications of lignin may increase both the cost and the environmental impact of the resulting PUs. Therefore, alternative strategies based on the direct use of lignin in co-reaction with suitable polyisocyanates without any preliminary chemical modification are to be preferred. To this end, new thermoset PU coatings from chemically-unmodified lignin are presented in ...
Chemical modification strategies to improve the mechanical properties of lignin-based polyurethanes ...
Polyurethane (PU) films were prepared by solution casting using a three-component system, namely, a ...
We report the preparation of lignin-based rigid polyurethane (RPU) foams from surface functionalized...
One of the most common approaches to prepare lignin-based polyurethanes (PUs) is to chemically deriv...
New lignin-based thermoset polyurethane (PU) coatings with high lignin content are presented in this...
New polyurethane coatings with a high biomass content (over 85 wt.%) and tailored properties are pre...
New biobased polyurethane (PU) coatings with high lignin content were developed and characterized in...
Three different formulations of bio-based polyurethane (PU), varying the weight ratio between Organo...
Polyurethane (PU), as a polymer material with versatile product forms and excellent performance, is ...
Polyurethane (PU) coatings were successfully produced using unmodified kraft lignin (KL) as an envir...
Lignin-based polyol was obtained via oxyalkylation reaction with propylene carbonate using eucalyptu...
Lignin is considered one of the most promising biomass feedstocks due to its abundance, its renewabl...
Adhesives based on renewable materials have recently been attracting attention due to the looming pe...
Traditional polyurethane synthesis involves the use of petroleum-based polyols, which raises environ...
Chemical modification strategies to improve the mechanical properties of lignin-based polyurethanes ...
Polyurethane (PU) films were prepared by solution casting using a three-component system, namely, a ...
We report the preparation of lignin-based rigid polyurethane (RPU) foams from surface functionalized...
One of the most common approaches to prepare lignin-based polyurethanes (PUs) is to chemically deriv...
New lignin-based thermoset polyurethane (PU) coatings with high lignin content are presented in this...
New polyurethane coatings with a high biomass content (over 85 wt.%) and tailored properties are pre...
New biobased polyurethane (PU) coatings with high lignin content were developed and characterized in...
Three different formulations of bio-based polyurethane (PU), varying the weight ratio between Organo...
Polyurethane (PU), as a polymer material with versatile product forms and excellent performance, is ...
Polyurethane (PU) coatings were successfully produced using unmodified kraft lignin (KL) as an envir...
Lignin-based polyol was obtained via oxyalkylation reaction with propylene carbonate using eucalyptu...
Lignin is considered one of the most promising biomass feedstocks due to its abundance, its renewabl...
Adhesives based on renewable materials have recently been attracting attention due to the looming pe...
Traditional polyurethane synthesis involves the use of petroleum-based polyols, which raises environ...
Chemical modification strategies to improve the mechanical properties of lignin-based polyurethanes ...
Polyurethane (PU) films were prepared by solution casting using a three-component system, namely, a ...
We report the preparation of lignin-based rigid polyurethane (RPU) foams from surface functionalized...