E. M. D. Siriwardane Et Al. , "Achieving Fast Kinetics and Enhanced Li Storage Capacity for Ti3C2O2 by Intercalation of Quinone Molecules," ACS APPLIED ENERGY MATERIALS , vol.2, no.2, pp.1251-1258, 2019
Siriwardane, E. M. D. Et Al. 2019. Achieving Fast Kinetics and Enhanced Li Storage Capacity for Ti3C2O2 by Intercalation of Quinone Molecules. ACS APPLIED ENERGY MATERIALS , vol.2, no.2 , 1251-1258.
Siriwardane, E. M. D., Demiroglu, I., SEVİK, C., & Cakir, D., (2019). Achieving Fast Kinetics and Enhanced Li Storage Capacity for Ti3C2O2 by Intercalation of Quinone Molecules. ACS APPLIED ENERGY MATERIALS , vol.2, no.2, 1251-1258.
Siriwardane, Edirisuriya Et Al. "Achieving Fast Kinetics and Enhanced Li Storage Capacity for Ti3C2O2 by Intercalation of Quinone Molecules," ACS APPLIED ENERGY MATERIALS , vol.2, no.2, 1251-1258, 2019
Siriwardane, Edirisuriya M. Et Al. "Achieving Fast Kinetics and Enhanced Li Storage Capacity for Ti3C2O2 by Intercalation of Quinone Molecules." ACS APPLIED ENERGY MATERIALS , vol.2, no.2, pp.1251-1258, 2019
Siriwardane, E. M. D. Et Al. (2019) . "Achieving Fast Kinetics and Enhanced Li Storage Capacity for Ti3C2O2 by Intercalation of Quinone Molecules." ACS APPLIED ENERGY MATERIALS , vol.2, no.2, pp.1251-1258.
@article{article, author={Edirisuriya M. D. Siriwardane Et Al. }, title={Achieving Fast Kinetics and Enhanced Li Storage Capacity for Ti3C2O2 by Intercalation of Quinone Molecules}, journal={ACS APPLIED ENERGY MATERIALS}, year=2019, pages={1251-1258} }