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Non-isothermal decomposition of platinum acetylacetonate as a cost-efficient and Size-Controlled Synthesis of Pt/C nanoparticles

Article ID Journal Published Year Pages File Type
10130736 Catalysis Communications 2018 20 Pages PDF
Keywords
Pt/CSize controlThermal decompositionin-situ
Related Topics
Physical Sciences and Engineering Chemical Engineering Catalysis
Preview
Non-isothermal decomposition of platinum acetylacetonate as a cost-efficient and Size-Controlled Synthesis of Pt/C nanoparticles
Authors
Anton A. Kulbakov, Alexandra B. Kuriganova, Mathieu Allix, Aydar Rakhmatullin, NinaV. Smirnova, Olga A. Maslova, Igor N. Leontyev,
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Journal
Catalysis Communications
Journal: Catalysis Communications
Related Categories
Pt/C
Size control
Thermal decomposition
in-situ
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
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