PADAMA
PADAMA, ALLAN ABRAHAM B.
Professor
abpadama@up.edu.ph

Research Profile

https://scholar.google.com/citations?view_op=list_works&hl=en&hl=en&user=QYQ3hl8AAAAJ&sortby=pubdate

Publications

Tomacruz JG, Pilario KES, Remolona MF, Padama AAB, Ocon JD. A Machine Learning-Accelerated Density Functional Theory (ML-DFT) Approach for Predicting Atomic Adsorption Energies on Monometallic Transition Metal Surfaces for Electrocatalyst Screening. Chemical Engineering Transactions. 2022;94:733-8.

Beronio ERA, Colambo IR, Padama AAB. The effects of substitutional doping on Cu vacancy formation in Cu2O(111): A density functional theory study, Physical Chemistry Chemical Physics. 2021;23:8800-8.

Balmeo MM, Dizon JSC, Empizo MJ, Solibet EJ, Agulto VC, Salvador AA, Sarukura N, Nakanishi H, Kasai H, Padama AAB. Density functional theory-based investigation of hydrogen adsorption on zinc oxide (101¯0) surface: Revisited. Surface Science. 2021;703:121726.

Kasai H, Padama AAB, Chantaramolee B, Arevalo RL. 2020. Hydrogen and Hydrogen-Containing Molecules on Metal Surfaces: Towards the Realization of Sustainable Hydrogen Economy, Springer Nature Singapore Pte Ltd.

Padama AAB, Ocon JD, Nakanishi H, Kasai H. Interaction of CO, O, and CO2 with Cu cluster supported on Cu (111): a density functional theory study. Journal of Physics: Condensed Matter. 2019;31:415201.

Padama, A. A. B., Dino, W. A., Wada, M., Tsumori, K., Kisaki, M., Kasai, H., Nakanishi, H., Sasao, M., & Tanaka, N. (2018). Adsorption of H on Cs/W (110): Impact of H on the Stability of Cs on the Surface. e-Journal of Surface Science and Nanotechnology, 16, 391-395.

Padama, A. A. B., & Albao, M. A. (2018). Interaction of coadsorbed C and O atoms on W (100) surface: Implications of CO2 on the temperature-programmed desorption profile. Journal of Vacuum Science & Technology A: Vacuum, Surfaces, and Films, 36(2), 021402.

Padama, A. A. B., Cristobal, A. P. S., Ocon, J. D., Diño, W. A., & Kasai, H. (2017). Effects of Adsorbates (CO, COH, and HCO) on the Arrangement of Pd Atoms in PdCu (111). The Journal of Physical Chemistry C, 121(33), 17818-17826.

Padama, A. A. B., Villaos, R. A. B., Albia, J. R., Diño, W. A., Nakanishi, H., & Kasai, H. (2016). CO-induced Pd segregation and the effect of subsurface Pd on CO adsorption on CuPd surfaces. Journal of Physics: Condensed Matter, 29(2), 025005.

Padama, A. A. B., Nakanishi, H., & Kasai, H. (2015). Quantum states of hydrogen atom on Pd (1 1 0) surface. Applied Surface Science, 359, 687-691.

Padama, A. A. B., & Kasai, H. (2015). Understanding the mechanism of H atom absorption in the Pd (1 1 0) surface. Journal of Alloys and Compounds, 645, S123-S127.

Padama, A. A. B., Kishi, H., Arevalo, R. L., Moreno, J. L. V., Kasai, H., Taniguchi, M., Uenishi, M., Tanaka, H., & Nishihata, Y. (2012). NO dissociation on Cu (111) and Cu2O (111) surfaces: a density functional theory based study. Journal of Physics: Condensed Matter, 24(17), 175005.