Graphitic Carbon Nitride Supported Ultrafine Pd and Pd-Cu Catalysts: Enhanced Reactivity, Selectivity, and Longevity for Nitrite and Nitrate Hydrogenation.
Explore this paper's citation graph
Summary
The unique nitrogen-abundant surface, porous structure, and hydrophilic nature of g-C3N4 facilitates metal nanoparticle dispersion, mass transfer of reactants, and nitrogen coupling for nitrogen gas production to improve catalytic performance.
- Type
- article
- Published
- 2017-08-14
- Cited by
- 61
- References
- 24
- OpenAlex
- https://openalex.org/W2743785089
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:206461649
Keywords
Catalysis, Materials science, Reactivity (psychology), Selectivity, Ethylene glycol
References
- Enhanced activity and selectivity of carbon nanofiber supported Pd catalysts for nitrite reduction.
- Critical review of Pd-based catalytic treatment of priority contaminants in water.
- A quantitative surface analytical study of electrochemically-formed copper oxides by XPS and X-ray-induced Auger spectroscopy
- Elucidation of Nitrate Reduction Mechanisms on a Pd‐In Bimetallic Catalyst using Isotope Labeled Nitrogen Species
- XPS and TPR examinations of γ-alumina-supported Pd-Cu catalysts
- Mesoporous g-C3N4 nanorods as multifunctional supports of ultrafine metal nanoparticles: hydrogen generation from water and reduction of nitrophenol with tandem catalysis in one step
- Support effect on selectivity of nitrite reduction in water
- Hydrogenation of Nitrate in Water to Nitrogen over Pd–Cu Supported on Active Carbon
- Nitrate reduction by maghemite supported Cu-Pd bimetallic catalyst
- Effects of natural water ions and humic acid on catalytic nitrate reduction kinetics using an alumina supported Pd-Cu catalyst.
- Titania supported Pd-Cu bimetallic catalyst for the reduction of nitrate in drinking water
- Graphitic carbon nitride polymers: promising catalysts or catalyst supports for heterogeneous oxidation and hydrogenation
- Enhanced catalytic hydrogenation of aqueous bromate over Pd/mesoporous carbon nitride
- Catalytic nitrate removal from water, past, present and future perspectives
- Synthesis of Superparamagnetic Core-Shell Structure Supported Pd Nanocatalysts for Catalytic Nitrite Reduction with Enhanced Activity, No Detection of Undesirable Product of Ammonium, and Easy Magnetic Separation Capability.
- Ultrafine Cobalt Catalysts on Covalent Carbon Nitride Frameworks for Oxygenic Photosynthesis.
- Mesoporous palladium–copper bimetallic electrodes for selective electrocatalytic reduction of aqueous CO2 to CO
- Structure Sensitivity Study of Waterborne Contaminant Hydrogenation Using Shape- and Size-Controlled Pd Nanoparticles
- Palladium Cobalt Alloy Catalyst Nanoparticles Facilitated Enhanced Hydrogen Storage Performance of Graphitic Carbon Nitride
- The effects of nitrate, nitrite and N-nitroso compounds on human health: a review.
Cited by
- Dual-reaction triggered sensitivity amplification for ultrasensitive peptide-cleavage based electrochemical detection of matrix metalloproteinase-7.
- Stability, structural and electronic properties of ternary PdxAuyAgz clusters (x + y + z = 7): A theoretical study
- Fabrication and Characterization of Pd-TNPs Bimetallic Nanoelectrode for Electrochemical Denitrification from Groundwater
- Fabrication and characterization of a Cu-Pd-TNPs polymetallic nanoelectrode for electrochemically removing nitrate from groundwater.
- Computational insight into the mechanism of O2 to H2O2 reduction on amino-groups-containing g-C3N4
- Development of novel thin film nanocomposite forward osmosis membranes containing halloysite/graphitic carbon nitride nanoparticles towards enhanced desalination performance
- Pd Nanoparticle Catalysts Supported on Nitrogen-Functionalized Activated Carbon for Oxyanion Hydrogenation and Water Purification
- Magnetic covalent hybrid of graphitic carbon nitride and graphene oxide as an efficient catalyst support for immobilization of Pd nanoparticles
- Enzymes Immobilized on Carbon Nitride (C3N4) Cooperating with Metal Nanoparticles for Cascade Catalysis
- Ni nanoparticles as electron-transfer mediators and NiS as interfacial active sites for coordinative enhancement of H2-evolution performance of TiO2
- Plasmonic AuPd-based Mott-Schottky photocatalyst for synergistically enhanced hydrogen evolution from formic acid and aldehyde
- High selective reduction of nitrate into nitrogen by novel Fe-Cu/D407 composite with excellent stability and activity.
- Highly active and durable carbon electrocatalyst for nitrate reduction reaction.
- Mesoporous silica nanosphere with open-mouth stellate pore architecture as a promising carrier for highly active solid acid catalysts
- Hydrogen generation from formic acid decomposition on Pd–Cu nanoalloys
- Sub-nanocatalysis for Efficient Aqueous Nitrate Reduction: Effect of Strong Metal-Support Interaction.
- Resource utilization of waste deNOx catalyst for continuous-flow catalysis by supported metal reactors
- Lignocellulose-stabilized iron-palladium nanomagnetic biocomposites
- Interface Nanoengineering of PdNi-S/C Nanowires by Sulfite-Induced for Enhancing Electrocatalytic Hydrogen Evolution.
- Influence of nitrogen vacancies on selective oxidation of aromatic alcohols on g-C3N4: A comparative DFT study
Related papers
- Recent advancements in the development of graphitic like carbon nitride (g-C3N4) photocatalyst for volatile organic compounds removal: a review
- Conversion of Biomass-Derived Glycolide to Ethylene Glycol over Cu
- Rhodium(I) Complexes as Useful Tools for the Activation of Fluoroolefins
- The Dependence of Ethylene Glycol Decomposition on Initial Concentration in the Water Treatment using Pulsed Streamer Discharge in Air
- Ethylene glycol oligomers
- Technical Progress of Ethylene Glycol Made by Synthesis Gas Via Dimethyl Oxalate
- Linear Reactivity-Selectivity Correlations in Additions of Diarylcarbenium Ions to Alkenes; a Rebuttal of the Reactivity-Selectivity Principle†