Saravanan, P.K.; Bhalothia, D.; Beniwal, A.; Tsai, C.-H.; Liu, P.-Y.; Chen, T.-Y.; Ku, H.-M.; Chen, P.-C.
Adjacent Reaction Sites of Atomic Mn2O3 and Oxygen Vacancies Facilitate CO2 Activation for Enhanced CH4 Production on TiO2-Supported Nickel-Hydroxide Nanoparticles. Catalysts 2024, 14, 410.
https://doi.org/10.3390/catal14070410
AMA Style
Saravanan PK, Bhalothia D, Beniwal A, Tsai C-H, Liu P-Y, Chen T-Y, Ku H-M, Chen P-C.
Adjacent Reaction Sites of Atomic Mn2O3 and Oxygen Vacancies Facilitate CO2 Activation for Enhanced CH4 Production on TiO2-Supported Nickel-Hydroxide Nanoparticles. Catalysts. 2024; 14(7):410.
https://doi.org/10.3390/catal14070410
Chicago/Turabian Style
Saravanan, Praveen Kumar, Dinesh Bhalothia, Amisha Beniwal, Cheng-Hung Tsai, Pin-Yu Liu, Tsan-Yao Chen, Hong-Ming Ku, and Po-Chun Chen.
2024. "Adjacent Reaction Sites of Atomic Mn2O3 and Oxygen Vacancies Facilitate CO2 Activation for Enhanced CH4 Production on TiO2-Supported Nickel-Hydroxide Nanoparticles" Catalysts 14, no. 7: 410.
https://doi.org/10.3390/catal14070410
APA Style
Saravanan, P. K., Bhalothia, D., Beniwal, A., Tsai, C.-H., Liu, P.-Y., Chen, T.-Y., Ku, H.-M., & Chen, P.-C.
(2024). Adjacent Reaction Sites of Atomic Mn2O3 and Oxygen Vacancies Facilitate CO2 Activation for Enhanced CH4 Production on TiO2-Supported Nickel-Hydroxide Nanoparticles. Catalysts, 14(7), 410.
https://doi.org/10.3390/catal14070410