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Heterogeneous catalysis played, plays, and will continue to play, a major key role in industrial processes for large-scale synthesis of commodity chemicals of global importance, and in catalytic systems that possess a critical role in energy generation and environmental protection approaches. As a result of the ongoing progress in materials science, nanotechnology, and characterizations, great advances have been achieved in heterogeneous catalysis by nanomaterials. Efficient approaches and advanced methods for the design of nano-structured composite materials (up to atomic level), subject to specific nano-morphologies with enhanced metal–metal and metal–support interactions favorable for catalysis (that enable fine-tuning of the critical properties of the designed catalysts), provide optimized catalysts with outstanding performances in numerous eco-friendly and cost-effective applications. Accordingly, great progress has been achieved involving, for example, emissions control, waste treatment, photocatalytic, bio-refinery, CO2 utilization, and fuel cells applications, as well as hydrocarbon processing for H2, added-value chemicals, and liquid fuels production. The themed Special Issue has succeeded in collecting 10 high-quality contributions that cover recent research progress in the field for a variety of applications (e.g., environment, energy, added-value chemicals/organics synthesis, and bio-transformation) declaring the prospect and importance of nanomaterials in all the directions of heterogeneous catalysis.
n/a --- B-doped --- polyoxymethylene dimethyl ethers --- porous carbon --- self-catalytic pyrolysis --- visible light --- heterostructure --- oxygen vacancies --- TiO2 nanotube --- thiadiazoles --- ethylidenethiosemicarbazides --- adsorption --- dimethoxymethane --- nano-biocatalyst --- heterogeneous catalysis --- bio-catalysis --- H2 evolution --- carbon cuboids --- trioxymethylene --- ?-glucosidase --- metal-organic frameworks --- Brønsted acid sites --- hybrid --- MXene --- oleuropein --- Rhodamine B --- antibiotics --- maleic anhydride --- oxygen evolution reaction --- photocatalyst --- 2-methyl-3-butennitrile --- halide perovskite --- zeolites --- electrospinning --- Rh --- Ti3C2Tx --- heterostructures --- hydroxytyrosol --- metal–organic frameworks --- photocatalysis --- Ni/ZrO2 --- the maximum included sphere --- functionalized olefin --- selective hydrogenation --- thiazoles --- oxidation --- visible-light --- red P --- chitosan-MgO nanocomposite --- ZnO --- g-C3N4/TiO2 --- hydroformylation --- steric constraint
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Heterocycles feature widely in natural products, agrochemicals, pharmaceuticals and dyes, and their synthesis is of great interest to synthetic chemists in both academia and industry. The contributions of recent applications of new methodologies in C–H activation, photoredox chemistry, cross-coupling strategies, borrowing hydrogen catalysis, multicomponent and solvent-free reactions, regio- and stereoselective syntheses, as well as other new, attractive approaches for the construction of heterocyclic scaffolds are of great interest. This Special Issue is dedicated to featuring the latest research that is ongoing in the field of heterocyclic synthesis. It is expected that most submissions will focus on five- and six-membered oxygen and nitrogen-containing heterocycles, but structures incorporating other rings/heteroatoms will also be considered. Original research (communications, full papers and reviews) that discusses innovative methodologies for assembling heterocycles with potential application in materials, catalysis and medicine are therefore welcome.
amine nucleophiles --- alkynoic acids --- cascade reaction --- gold catalysis --- fused N-heterocycles --- solid-phase synthesis --- ketone --- traceless synthesis --- natural products --- enol ethers --- photocatalysis --- photoredox --- visible-light-induced catalysis --- photoredox cyclization --- organic dyes --- heterocycles --- dihydrocoumarins --- synthesis --- 3-trifluoroacetyl coumarins --- phenols --- antifungal activities --- terpyridines --- 3,2′:6′,3″-terpyridine --- cyclohexanol derivative --- condensation --- heterocyclic --- 1,2,3-triazol --- triazolylmethyl phosphinate --- triazolylmethyl phosphate --- copper-catalyzed azide-alkyne cycloaddition --- click reaction --- azides --- cinnolines --- triazoles --- CuAAC --- alkynes --- cycloalkynes --- Richter cyclization --- Suzuki coupling --- fluorescence --- cytotoxicity --- coumarin --- pyrazolo[3,4-b]pyridine --- silica sulfuric acid --- 2H-pyran --- valence isomerism --- 1-oxa-triene --- dienone --- oxa-electrocyclization --- Knoevenagel --- propargyl Claisen --- cycloisomerization --- asymmetric dimeric β-carboline --- acylhydrazone group --- cytotoxic --- antitumor --- structure–activity relationship --- γ-lactam --- pyrrolidones --- multicomponent reactions --- organocatalysis --- pyridine --- CF3CO-acetylenes --- 1,3-oxazines --- fluorinated heterocycles --- saturated oxygen heterocycles --- cyclic ethers --- total synthesis --- multicomponent reaction --- α-halohydrazones --- Staudinger reaction --- aza-Wittig --- 1H-imidazole-2(3H)-thione --- 2H-imidazo[2,1-b][1,3,4]thiadiazine --- purine --- nucleobase --- aromatic substitution --- arylation --- fluoroalcohol --- α-chloroglycinates --- 5-acylamino-1,3-thiazoles --- Hantzsch reaction --- TMSBr --- propargylic alcohols --- cascade cyclization --- 4-bromo quinolines --- synthesis of benzofurans --- intra-molecular approach --- inter-molecular approach --- n/a --- 3,2':6',3"-terpyridine --- structure-activity relationship
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