Biorefinery and paper pulping lignins, referred hereto as technical lignins, contain condensed C–C interunit linkages. These robust C–C linkages with higher bond dissociation energies are difficult to disrupt under hydrogenolysis conditions, which are generally used for cleaving C–O bonds of native lignin in biomass or model C–O linked compounds. Thus, selective interunit C–C cleavage to release aromatic monomers for high-value applications is a challenge. We report an effective catalytic system to cleave such C–C bonds selectively under mild conditions. A representative methylene-linked C–C model dimer achieves 88% yield of mainly two aromatic monomers within 1.5 h at a reasonably low temperature (250 °C) using a commercial CoS<sub>2</sub>...
In the coming decades major changes are expected in the chemical industry regarding the utilized raw...
It is imperative to develop an efficient and environmentally benign pathway to valorize profusely av...
Copper-doped porous metal oxides catalyze the one-pot disassembly of biomass-derived lignin via C–O ...
Carbon–carbon bonds, ubiquitous in lignin, limit monomer yields from current depolymerization strate...
Lignin depolymerisation has received considerable attention recently due to the pressing need to fin...
Lignin depolymerisation has received considerable attention recently due to the pressing need to fin...
Lignin depolymerisation has received considerable attention recently due to the pressing need to fin...
Lignin depolymerisation has received considerable attention recently due to the pressing need to fin...
Lignin depolymerisation has received considerable attention recently due to the pressing need to fin...
Lignin depolymerisation has received considerable attention recently due to the pressing need to fin...
Lignin is a major component of lignocellulosic biomass and could be an important renewable feedstock...
International audienceLignin represents the most abundant source of renewable aromatics. Yet, althou...
International audienceLignin represents the most abundant source of renewable aromatics. Yet, althou...
International audienceLignin represents the most abundant source of renewable aromatics. Yet, althou...
International audienceLignin represents the most abundant source of renewable aromatics. Yet, althou...
In the coming decades major changes are expected in the chemical industry regarding the utilized raw...
It is imperative to develop an efficient and environmentally benign pathway to valorize profusely av...
Copper-doped porous metal oxides catalyze the one-pot disassembly of biomass-derived lignin via C–O ...
Carbon–carbon bonds, ubiquitous in lignin, limit monomer yields from current depolymerization strate...
Lignin depolymerisation has received considerable attention recently due to the pressing need to fin...
Lignin depolymerisation has received considerable attention recently due to the pressing need to fin...
Lignin depolymerisation has received considerable attention recently due to the pressing need to fin...
Lignin depolymerisation has received considerable attention recently due to the pressing need to fin...
Lignin depolymerisation has received considerable attention recently due to the pressing need to fin...
Lignin depolymerisation has received considerable attention recently due to the pressing need to fin...
Lignin is a major component of lignocellulosic biomass and could be an important renewable feedstock...
International audienceLignin represents the most abundant source of renewable aromatics. Yet, althou...
International audienceLignin represents the most abundant source of renewable aromatics. Yet, althou...
International audienceLignin represents the most abundant source of renewable aromatics. Yet, althou...
International audienceLignin represents the most abundant source of renewable aromatics. Yet, althou...
In the coming decades major changes are expected in the chemical industry regarding the utilized raw...
It is imperative to develop an efficient and environmentally benign pathway to valorize profusely av...
Copper-doped porous metal oxides catalyze the one-pot disassembly of biomass-derived lignin via C–O ...