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Rhodium(0) nanoparticles supported on nanosilica: Highly active and long lived catalyst in hydrogen generation from the methanolysis of ammonia borane

Article ID Journal Published Year Pages File Type
6499765 Applied Catalysis B: Environmental 2016 11 Pages PDF
Keywords
EDXRh2+Ammonia boraneEnergy Dispersive X-ray SpectroscopyTemHydrogen generationX-ray photoelectron spectroscopyXPSMethanolysisTransmission electron microscopyNanoparticlesNanosilicaXRDX-ray diffraction
Related Topics
Physical Sciences and Engineering Chemical Engineering Catalysis
Preview
Rhodium(0) nanoparticles supported on nanosilica: Highly active and long lived catalyst in hydrogen generation from the methanolysis of ammonia borane
Authors
Derya Özhava, Saim Özkar,
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Journal
Applied Catalysis B: Environmental
Journal: Applied Catalysis B: Environmental
Related Categories
EDX
Rh2+
Ammonia borane
Energy Dispersive X-ray Spectroscopy
Tem
Hydrogen generation
X-ray photoelectron spectroscopy
XPS
Methanolysis
Transmission electron microscopy
Nanoparticles
Nanosilica
XRD
X-ray diffraction
Bioengineering
Catalysis
Chemical Engineering (General)
Chemical Health and Safety
Colloid and Surface Chemistry
Filtration and Separation
Fluid Flow and Transfer Processes
Process Chemistry and Technology
Related Journals
Applied Catalysis A: General
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Microporous and Mesoporous Materials
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Molecular Catalysis
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