Rivera, E.; Ceballo, R.; Neira, O.; Avila, O.; Fonseca, R.
DFT Study of Functionalized Benzoxazole-Based D–π–A Architectures: Influence of Ionic Fragments on Optical Properties and Their Potential in OLED and Solar Cell Devices. Molecules 2025, 30, 3737.
https://doi.org/10.3390/molecules30183737
AMA Style
Rivera E, Ceballo R, Neira O, Avila O, Fonseca R.
DFT Study of Functionalized Benzoxazole-Based D–π–A Architectures: Influence of Ionic Fragments on Optical Properties and Their Potential in OLED and Solar Cell Devices. Molecules. 2025; 30(18):3737.
https://doi.org/10.3390/molecules30183737
Chicago/Turabian Style
Rivera, Edwin, Ronal Ceballo, Oscar Neira, Oriana Avila, and Ruben Fonseca.
2025. "DFT Study of Functionalized Benzoxazole-Based D–π–A Architectures: Influence of Ionic Fragments on Optical Properties and Their Potential in OLED and Solar Cell Devices" Molecules 30, no. 18: 3737.
https://doi.org/10.3390/molecules30183737
APA Style
Rivera, E., Ceballo, R., Neira, O., Avila, O., & Fonseca, R.
(2025). DFT Study of Functionalized Benzoxazole-Based D–π–A Architectures: Influence of Ionic Fragments on Optical Properties and Their Potential in OLED and Solar Cell Devices. Molecules, 30(18), 3737.
https://doi.org/10.3390/molecules30183737