E. Erol Et Al. , "The synergistic effect of Er3+ and Ho3+ on temporal color tuning of upconversion emission in a glass host via a facile excitation modulation technique for anti-counterfeiting applications," PHYSICAL CHEMISTRY CHEMICAL PHYSICS , vol.22, no.44, pp.25963-25972, 2020
Erol, E. Et Al. 2020. The synergistic effect of Er3+ and Ho3+ on temporal color tuning of upconversion emission in a glass host via a facile excitation modulation technique for anti-counterfeiting applications. PHYSICAL CHEMISTRY CHEMICAL PHYSICS , vol.22, no.44 , 25963-25972.
Erol, E., Kıbrıslı, O., Vahedigharehchopogh, N., Çelikbilek Ersundu, M., & Ersundu, A. E., (2020). The synergistic effect of Er3+ and Ho3+ on temporal color tuning of upconversion emission in a glass host via a facile excitation modulation technique for anti-counterfeiting applications. PHYSICAL CHEMISTRY CHEMICAL PHYSICS , vol.22, no.44, 25963-25972.
Erol, Erdinç Et Al. "The synergistic effect of Er3+ and Ho3+ on temporal color tuning of upconversion emission in a glass host via a facile excitation modulation technique for anti-counterfeiting applications," PHYSICAL CHEMISTRY CHEMICAL PHYSICS , vol.22, no.44, 25963-25972, 2020
Erol, Erdinç Et Al. "The synergistic effect of Er3+ and Ho3+ on temporal color tuning of upconversion emission in a glass host via a facile excitation modulation technique for anti-counterfeiting applications." PHYSICAL CHEMISTRY CHEMICAL PHYSICS , vol.22, no.44, pp.25963-25972, 2020
Erol, E. Et Al. (2020) . "The synergistic effect of Er3+ and Ho3+ on temporal color tuning of upconversion emission in a glass host via a facile excitation modulation technique for anti-counterfeiting applications." PHYSICAL CHEMISTRY CHEMICAL PHYSICS , vol.22, no.44, pp.25963-25972.
@article{article, author={Erdinç EROL Et Al. }, title={The synergistic effect of Er3+ and Ho3+ on temporal color tuning of upconversion emission in a glass host via a facile excitation modulation technique for anti-counterfeiting applications}, journal={PHYSICAL CHEMISTRY CHEMICAL PHYSICS}, year=2020, pages={25963-25972} }