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Dynamically modulated synthesis of hollow metal-organic frameworks for selective hydrogenation reactions
Hollow metal-organic frameworks (MOFs) have attracted increasing attention in the field of catalysis in recent years due to their unique cavity...
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Robust Co3O4 nanocatalysts supported on biomass-derived porous N-doped carbon toward low-pressure hydrogenation of furfural
The catalytic conversion of biomass platform chemicals using abundant non-noble metal nanocatalysts is a challenging topic. Here, high-density cobalt...
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Converting Co2+-impregnated g-C3N4 into N-doped CNTs-confined Co nanoparticles for efficient hydrogenation rearrangement reactions of furanic aldehydes
The cyclopentanone and derivatives are a class of crucial fine chemicals for various industries and currently produced by conventional petrochemical...
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hcp-phased Ni nanoparticles with generic catalytic hydrogenation activities toward different functional groups
Catalytic hydrogenation is a vital industrial means to produce value-added fuels and fine chemicals, however, requiring highly efficient catalysts,...
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Pd/N-doped carbon dots@dendritic mesoporous silica nanospheres: A highly efficient catalyst for the hydrogenation of 4-nitrophenol
Highly dispersed Pd/N-doped carbon dots (Pd/NCDs) were successfully immobilized in the mesoporous channels of amino-functionalized dendritic...
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Covalent Functionalization of Carbon Nanostructures
Covalent functionalization of carbon nanostructures, i.e., graphene, single- and multiwalled carbon nanotubes (SWCNTs and MWCNTs), fullerenes, carbon... -
Reduction of dinitrogen to ammonia on doped three-atom clusters Nb2M (M = Sc to Cu & Y to Ag)
AbstractCatalytic reduction of dinitrogen to ammonia under mild conditions remains an attractive topic for the purpose of lowering energy...
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Food and Nutrition (Cotton as a Feed and Food Crop)
Cotton is primarily grown for the fibre, used in the textile industry and the oil from the cottonseed. However, cottonseed is considered a major... -
Accurate energy barriers for catalytic reaction pathways: an automatic training protocol for machine learning force fields
We introduce a training protocol for develo** machine learning force fields (MLFFs), capable of accurately determining energy barriers in catalytic...
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Regulating p-orbital of metallic bismuth nanosheets via transition-metal oxides enables advanced CO2 electroreduction
The interaction of p - d orbitals can be used to efficiently improve electrocatalytic performance. However, the enhanced mechanism of electrocatalytic...
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X-Ray Absorption Spectroscopy (XAS) Combined with Other Spectroscopic Techniques
The aim of this chapter is to show some experimental cases of X-ray absorption (XAS) application to the field of catalysis where its use had a... -
Machine-learning-aided Au-based single-atom alloy catalysts discovery for electrochemical NO reduction reaction to NH3
Direct electrochemical conversion of NO to NH 3 has attracted widespread interest as a green and sustainable strategy for both ammonia synthesis and...
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Selectivity engineering in catalysis by ruthenium nanoparticles supported on heteropolyacid-encapsulated MOF-5: one-pot synthesis of allyl 4-cyclohexanebutyrate and kinetic modeling
Functionalized metal-organic framework containing a heteropolyacid such as dodecatungstophosphoric (DTP)-encapsulated MOF-5 was synthesized by an in...
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Hydrogen passivation of defect levels in the annealed CdZnTe:In crystals
We investigated high-resistivity cadmium zinc telluride (CdZnTe):In single crystals annealed in hydrogen to reveal the passivation effect of defects....
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Efficient selective activation of sorbitol C–O bonds over C–C bonds on CoGa (221) generated by lattice-induction strategy
Sorbitol is a primary platform compound in the conversion of cellulose. The conversion of sorbitol to C 6 hydrocarbons requires a complete cleavage of...
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Effect of Irradiation with a Pulsed Electron Beam on the Defect Structure Formation and the Properties of the Surface Layer of Zr–Nb–H System Alloys
AbstractThe effect of pulsed electron beam (PEB) irradiation modes on the structure and defect formation and the mechanical strength in the...
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Recent developments of supported and magnetic nanocatalysts for organic transformations: an up-to-date review
AbstractDesigning and building an ideal catalyst for organic reactions is needed to increase the efficiency, reaction conditions, and to reduce its...
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Ultimate structures in catalysis: Single atoms, subnano-clusters, and electrons
When reduced to the atomic level, catalysts exhibit greatly improved performance, i.e., improved atomic utilization, heightened coordination...