Renewable aromatics can be conveniently synthesized from furanics by introducing an intermediate hydrogenation step in the Diels-Alder (DA) aromatization route, to effectively block retro-DA activity. Aromatization of the hydrogenated DA adducts requires tandem catalysis, using a metal-based dehydrogenation catalyst and solid acid dehydration catalyst in toluene. Herein it is demonstrated that the hydrogenated DA adducts can instead be conveniently converted into renewable aromatics with up to 80% selectivity in a solid-phase reaction with shorter reaction times using only an acidic zeolite, that is, without solvent or dehydrogenation catalyst. Hydrogenated adducts from diene/dienophile combinations of (methylated) furans with maleic anhydr...
We report a novel catalytic conversion of biomass-derived furans and alcohols to aromatics over zeol...
A new series of zeolite-catalyzed Diels-Alder cycloaddn. and dehydrative aromatization reactions bet...
A new series of zeolite-catalyzed Diels-Alder cycloaddn. and dehydrative aromatization reactions bet...
<p>Renewable aromatics can be conveniently synthesized from furanics by introducing an intermediate ...
A novel route for the production of renewable aromatic chemicals, particularly substituted phthalic ...
A novel route for the production of renewable aromatic chemicals, particularly substituted phthalic ...
A novel route for the production of renewable aromatic chemicals, particularly substituted phthalic ...
<p>A novel route for the production of renewable aromatic chemicals, particularly substituted phthal...
Bio-based furanics can be aromatized efficiently by sequential Diels-Alder (DA) addition and hydroge...
Bio-based furanics can be aromatized efficiently by sequential Diels-Alder (DA) addition and hydroge...
A novel route for the production of renewable aromatic chemicals, particularly substituted phthalic ...
A novel route for the production of renewable aromatic chemicals, particularly substituted phthalic ...
Bio-based furanics can be aromatized efficiently by sequential Diels–Alder (DA) addition and hydroge...
Bio-based furanics can be aromatized efficiently by sequential Diels–Alder (DA) addition and hydroge...
We report a novel catalytic conversion of biomass-derived furans and alcohols to aromatics over zeol...
We report a novel catalytic conversion of biomass-derived furans and alcohols to aromatics over zeol...
A new series of zeolite-catalyzed Diels-Alder cycloaddn. and dehydrative aromatization reactions bet...
A new series of zeolite-catalyzed Diels-Alder cycloaddn. and dehydrative aromatization reactions bet...
<p>Renewable aromatics can be conveniently synthesized from furanics by introducing an intermediate ...
A novel route for the production of renewable aromatic chemicals, particularly substituted phthalic ...
A novel route for the production of renewable aromatic chemicals, particularly substituted phthalic ...
A novel route for the production of renewable aromatic chemicals, particularly substituted phthalic ...
<p>A novel route for the production of renewable aromatic chemicals, particularly substituted phthal...
Bio-based furanics can be aromatized efficiently by sequential Diels-Alder (DA) addition and hydroge...
Bio-based furanics can be aromatized efficiently by sequential Diels-Alder (DA) addition and hydroge...
A novel route for the production of renewable aromatic chemicals, particularly substituted phthalic ...
A novel route for the production of renewable aromatic chemicals, particularly substituted phthalic ...
Bio-based furanics can be aromatized efficiently by sequential Diels–Alder (DA) addition and hydroge...
Bio-based furanics can be aromatized efficiently by sequential Diels–Alder (DA) addition and hydroge...
We report a novel catalytic conversion of biomass-derived furans and alcohols to aromatics over zeol...
We report a novel catalytic conversion of biomass-derived furans and alcohols to aromatics over zeol...
A new series of zeolite-catalyzed Diels-Alder cycloaddn. and dehydrative aromatization reactions bet...
A new series of zeolite-catalyzed Diels-Alder cycloaddn. and dehydrative aromatization reactions bet...