© The Royal Society of Chemistry 2016. This contribution is about the design and synthesis of various sulfonated hyperbranched poly(arylene oxindole)s (SHPAOs) with different substituents via a convenient A2 + B3 polycondensation and subsequent sulfonation as water-soluble and recyclable acid catalysts for the conversion of cellulose to levulinic acid (LA). Whereas their molecular weight (from 2.7 × 103 to 20.2 × 103), acid density (from 3.4 to 4.8 mmol H+ per g) as well as the polymer structure, viz. hyperbranched or linear analogues, only slightly affect the catalytic performance, the presence of electron-withdrawing substituents on the isatin polymer building block is key to their catalytic efficiency. Among all polymer catalyst designs ...
The primary objective of this thesis is to define optimum catalysts, reaction conditions and reactor...
In this work, the transformation cascade of lignocellulosic biomass into levulinic acid (LA) and its...
Nature has inspired scientists to push the boundaries of science. Branched macromolecular structures...
Acidic hydrolysis of cellulose is an attractive route to produce glucose in a sustainable way. Howev...
A new polymer acid catalyst, sulfonated hyperbranched poly(arylene oxindole), 5-OH-SHPAO, was prepar...
The mechanism of the acid-catalyzed condensation between levulinic acid and phenol to form diphenoli...
The conversion of cellulose into target chemicals is essential for the development of the sustainabl...
Here we describe a simple route to creating conformal sulphated zirconia monolayers throughout an SB...
Valorisation of lignocellulosic biomass for chemical production is one of the main challenges of the...
With increased concerns of our Nations\u27 dependence on fossil fuels and their harmful effects on t...
Biomass, the only sustainable source of organic carbon, is regarded as an ideal renewable energy sou...
BACKGROUND Catalytic upgrading of biomass into various alkyl levulinates has gained wide attention r...
A variety of interesting bulk chemicals is accessible by the acid-catalyzed hydrolysis of cellulose....
A linear polymer containing sulfonyl groups was synthesized from a vinyl monomer to use its acid gro...
A variety of interesting bulk chemicals is accessible by the acid-catalyzed hydrolysis of cellulose....
The primary objective of this thesis is to define optimum catalysts, reaction conditions and reactor...
In this work, the transformation cascade of lignocellulosic biomass into levulinic acid (LA) and its...
Nature has inspired scientists to push the boundaries of science. Branched macromolecular structures...
Acidic hydrolysis of cellulose is an attractive route to produce glucose in a sustainable way. Howev...
A new polymer acid catalyst, sulfonated hyperbranched poly(arylene oxindole), 5-OH-SHPAO, was prepar...
The mechanism of the acid-catalyzed condensation between levulinic acid and phenol to form diphenoli...
The conversion of cellulose into target chemicals is essential for the development of the sustainabl...
Here we describe a simple route to creating conformal sulphated zirconia monolayers throughout an SB...
Valorisation of lignocellulosic biomass for chemical production is one of the main challenges of the...
With increased concerns of our Nations\u27 dependence on fossil fuels and their harmful effects on t...
Biomass, the only sustainable source of organic carbon, is regarded as an ideal renewable energy sou...
BACKGROUND Catalytic upgrading of biomass into various alkyl levulinates has gained wide attention r...
A variety of interesting bulk chemicals is accessible by the acid-catalyzed hydrolysis of cellulose....
A linear polymer containing sulfonyl groups was synthesized from a vinyl monomer to use its acid gro...
A variety of interesting bulk chemicals is accessible by the acid-catalyzed hydrolysis of cellulose....
The primary objective of this thesis is to define optimum catalysts, reaction conditions and reactor...
In this work, the transformation cascade of lignocellulosic biomass into levulinic acid (LA) and its...
Nature has inspired scientists to push the boundaries of science. Branched macromolecular structures...