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Development of pulsed deposited manganese and molybdenum oxide surfaces decorated with platinum nanoparticles and their catalytic application for formaldehyde oxidation
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K. V. ÖZDOKUR Et Al. , "Development of pulsed deposited manganese and molybdenum oxide surfaces decorated with platinum nanoparticles and their catalytic application for formaldehyde oxidation," International Journal of Hydrogen Energy , vol.41, no.14, pp.5927-5933, 2016

ÖZDOKUR, K. V. Et Al. 2016. Development of pulsed deposited manganese and molybdenum oxide surfaces decorated with platinum nanoparticles and their catalytic application for formaldehyde oxidation. International Journal of Hydrogen Energy , vol.41, no.14 , 5927-5933.

ÖZDOKUR, K. V., Tatli, A. Y., Yilmaz, B., KOÇAK, S., & ERTAŞ, F. N., (2016). Development of pulsed deposited manganese and molybdenum oxide surfaces decorated with platinum nanoparticles and their catalytic application for formaldehyde oxidation. International Journal of Hydrogen Energy , vol.41, no.14, 5927-5933.

ÖZDOKUR, KEMAL Et Al. "Development of pulsed deposited manganese and molybdenum oxide surfaces decorated with platinum nanoparticles and their catalytic application for formaldehyde oxidation," International Journal of Hydrogen Energy , vol.41, no.14, 5927-5933, 2016

ÖZDOKUR, KEMAL V. Et Al. "Development of pulsed deposited manganese and molybdenum oxide surfaces decorated with platinum nanoparticles and their catalytic application for formaldehyde oxidation." International Journal of Hydrogen Energy , vol.41, no.14, pp.5927-5933, 2016

ÖZDOKUR, K. V. Et Al. (2016) . "Development of pulsed deposited manganese and molybdenum oxide surfaces decorated with platinum nanoparticles and their catalytic application for formaldehyde oxidation." International Journal of Hydrogen Energy , vol.41, no.14, pp.5927-5933.

@article{article, author={KEMAL VOLKAN ÖZDOKUR Et Al. }, title={Development of pulsed deposited manganese and molybdenum oxide surfaces decorated with platinum nanoparticles and their catalytic application for formaldehyde oxidation}, journal={International Journal of Hydrogen Energy}, year=2016, pages={5927-5933} }