Vorona, M.Y.; Yutronkie, N.J.; Melville, O.A.; Daszczynski, A.J.; Ovens, J.S.; Brusso, J.L.; Lessard, B.H.
Developing and Comparing 2,6-Anthracene Derivatives: Optical, Electrochemical, Thermal, and Their Use in Organic Thin Film Transistors. Materials 2020, 13, 1961.
https://doi.org/10.3390/ma13081961
AMA Style
Vorona MY, Yutronkie NJ, Melville OA, Daszczynski AJ, Ovens JS, Brusso JL, Lessard BH.
Developing and Comparing 2,6-Anthracene Derivatives: Optical, Electrochemical, Thermal, and Their Use in Organic Thin Film Transistors. Materials. 2020; 13(8):1961.
https://doi.org/10.3390/ma13081961
Chicago/Turabian Style
Vorona, Mikhail Y., Nathan J. Yutronkie, Owen A. Melville, Andrew J. Daszczynski, Jeffrey S. Ovens, Jaclyn L. Brusso, and Benoît H. Lessard.
2020. "Developing and Comparing 2,6-Anthracene Derivatives: Optical, Electrochemical, Thermal, and Their Use in Organic Thin Film Transistors" Materials 13, no. 8: 1961.
https://doi.org/10.3390/ma13081961
APA Style
Vorona, M. Y., Yutronkie, N. J., Melville, O. A., Daszczynski, A. J., Ovens, J. S., Brusso, J. L., & Lessard, B. H.
(2020). Developing and Comparing 2,6-Anthracene Derivatives: Optical, Electrochemical, Thermal, and Their Use in Organic Thin Film Transistors. Materials, 13(8), 1961.
https://doi.org/10.3390/ma13081961