:::

本所成員

:::
期刊論文
1

Prabu, S., Vinu, M., & Chiang, K. Y. (2022). Ultrafine Ru nanoparticles in shape control hollow octahedron MOF derived cobalt oxide@ carbon as high-efficiency catalysts for hydrolysis of ammonia borane. Journal of the Taiwan Institute of Chemical Engineers, 139, 104511.

2

Chan, C. H., Samikkannu, P., & Wang, H. W. (2016). Fe2O3/CdS co-sensitized titania nanotube for hydrogen generation from photocatalytic splitting water. international journal of hydrogen energy, 41(40), 17818-17825.

3

Prabu, S., & Chiang, K. Y. (2021). Magnetically recyclable Co/ZnO@ NiFe2O4 nanoparticles as highly active and reusable catalysts for hydrazine monohydrate hydrogen generation. Catalysis Science & Technology, 11(4), 1544-1557.

4

Prabu, S., & Wang, H. W. (2021). Hydrogen generation from the reaction of Al and H2O using a synthesized Al(OH)3 nanoparticle catalyst: the role of urea. Catalysis Science & Technology, 11(13), 4636-4649.

5

Prabu, S., & Chiang, K. Y. (2021). Yolk-shell silica dioxide spheres@metal-organic framework immobilized Ni/Mo nanoparticles as an effective catalyst for formic acid dehydrogenation at low temperature. Journal of Colloid and Interface Science, 604, 584-595.

6

Prabu, S., & Chiang, K. Y. (2023). Synergistic effect of Pd-Co3O4 nanoparticles supported on coffee-derived sulfur, nitrogen-codoped hierarchical porous carbon for efficient methanolysis of NaBH4. Journal of Alloys and Compounds, 938, 168548.

7

Prabu, S., & Chiang, K. Y. (2023). Ni-based nanoparticle catalyst for enhancing hydrogen production in coffee residue gasification and applying carbon deposits catalyst in electrochemical energy storage. Surfaces and Interfaces, 38, 102859.

8

Prabu, S., & Chiang, K. Y. (2023). Hydrogen production from Al catalytic hydrolysis using highly active Nano composite CaO-AlOOH/Graphene oxide (GO) catalysts derived from eggshell and cauliflower stems. Sustainable Energy Technologies and Assessments, 60, 103438.