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Catalytic wet hydrogen peroxide oxidation of isoeugenol to vanillin using microwave-assisted synthesized metal loaded catalysts (vol 506, 111537, 2021)

Valorisation of humins to high value-added products: Integrating biorefinery process towards a more sustainable futureA general overview on formation of humins, unavoidable by-products from biorefinery

Mechanochemical design of nanomaterials for catalytic applications with a benign-by-design focus in the field are discussed. A comparison of catalytic activities in selected cases for the materials prepared

Heterogeneous catalysis to drive the waste-to-pharma concept: From furanics to active pharmaceutical ingredientsA perspective on the use of heterogeneous catalysis to drive the waste-to-pharma concept

Mechanochemical Preparation of N,S-Doped Graphene Oxide Using (NH4)2SO4for Supercapacitor Applications

A Novel High-Performance Anode Material with an Enlarged Potential Window for a Hybrid Energy Storage System (SCs) because of their ion-insertable layer structure. However, there is still a need for more effort

Catalytic wet hydrogen peroxide oxidation of isoeugenol to vanillin using microwave-assisted synthesized metal loaded catalystsSupported metal nanoparticles (Cu, W, Mo among others) have been stabilized on a silica matrix

Corrigendum to Catalytic wet hydrogen peroxide oxidation of isoeugenol to vanillin using microwave-assisted synthesized metal loaded catalysts [Molecular Catalysis 506 (2021) 111537] (Molecular Catalysis (2021) 506, (S2468823121001541), (10.1016/j.mcat.2021.111537))Supported metal nanoparticles (Cu, W, Mo among others) have been stabilized on a silica matrix

Revisiting hydrotalcite synthesis: Efficient combined mechanochemical/coprecipitation synthesis to design advanced tunable basic catalystsHydrotalcite materials (HTs) were synthesized by a facile and swift combined mechanochemistry

Mechanochemical Preparation of N,S-Doped Graphene Oxide Using (NH4)2SO4for Supercapacitor Applications mechanochemistry using (NH4)2SO4 as a nitrogen and sulfur source, featuring a simple, low cost, and green process

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