A one-pot two-step degradation of lignin β-O-4 model compounds initiated by preferred oxidation of the primary over the secondary hydroxyl groups with a TEMPO/DAIB system has been developed [TEMPO=2,2,6,6-tetramethylpiperidine-N-oxyl, DAIB=(diacetoxy)iodobenzene]. The oxidised products are then cleaved by proline-catalysed retro-aldol reactions. This degradation methodology produces simple aromatics in good yields from lignin model compounds at room temperature with an extension to organosolv beech-wood lignin (L1) resulting in known cleavage products
Conversion of lignin into well-defined aromatic chemicals is a highly attractive goal but is often h...
Conversion of lignin into well-defined aromatic chemicals is a highly attractive goal, but is often ...
International audienceTo investigate lignin degradation, scientists commonly use model compounds. Un...
This research was supported by the European Union (Marie Curie ITN “SuBiCat” PITN-GA-2013-607044, S....
The world’s rapidly depleting fossil reservoirs has promoted research studies on renewable bioresour...
We herein report a two-step strategy for oxidative cleavage of lignin C-C bond to aromatic acids and...
Lignin, an abundant natural polymer with high aromaticity, is a potential source of renewable chemic...
The presented thesis aimed at finding reactions that would leave to the oxidative cleavage of Lignin...
The oxidative degradation of lignin under totally chlorine free conditions is one of the most releva...
We herein report a two-step strategy for oxidative cleavage of lignin C–C bond to aromatic acids and...
International audienceA novel combination of Fe(TAML)Li and (diacetoxyiodo)benzene for the oxidation...
Conversion of lignin into well-defined aromatic chemicals is a highly attractive goal but is often h...
Lignin as the most abundant source of aromatic chemicals in nature has attracted a great deal of att...
Lignocellulosic biomass is produced by nature as structural support in a variety of plants. The cell...
Conversion of lignin into well-defined aromatic chemicals is a highly attractive goal but is often h...
Conversion of lignin into well-defined aromatic chemicals is a highly attractive goal, but is often ...
International audienceTo investigate lignin degradation, scientists commonly use model compounds. Un...
This research was supported by the European Union (Marie Curie ITN “SuBiCat” PITN-GA-2013-607044, S....
The world’s rapidly depleting fossil reservoirs has promoted research studies on renewable bioresour...
We herein report a two-step strategy for oxidative cleavage of lignin C-C bond to aromatic acids and...
Lignin, an abundant natural polymer with high aromaticity, is a potential source of renewable chemic...
The presented thesis aimed at finding reactions that would leave to the oxidative cleavage of Lignin...
The oxidative degradation of lignin under totally chlorine free conditions is one of the most releva...
We herein report a two-step strategy for oxidative cleavage of lignin C–C bond to aromatic acids and...
International audienceA novel combination of Fe(TAML)Li and (diacetoxyiodo)benzene for the oxidation...
Conversion of lignin into well-defined aromatic chemicals is a highly attractive goal but is often h...
Lignin as the most abundant source of aromatic chemicals in nature has attracted a great deal of att...
Lignocellulosic biomass is produced by nature as structural support in a variety of plants. The cell...
Conversion of lignin into well-defined aromatic chemicals is a highly attractive goal but is often h...
Conversion of lignin into well-defined aromatic chemicals is a highly attractive goal, but is often ...
International audienceTo investigate lignin degradation, scientists commonly use model compounds. Un...