A. CAN Et Al. , "Indenofluorenes for organic optoelectronics: the dance of fused five- and six-membered rings enabling structural versatility," JOURNAL OF MATERIALS CHEMISTRY C , vol.10, no.22, pp.8496-8535, 2022
CAN, A. Et Al. 2022. Indenofluorenes for organic optoelectronics: the dance of fused five- and six-membered rings enabling structural versatility. JOURNAL OF MATERIALS CHEMISTRY C , vol.10, no.22 , 8496-8535.
CAN, A., Facchetti, A., & USTA, H., (2022). Indenofluorenes for organic optoelectronics: the dance of fused five- and six-membered rings enabling structural versatility. JOURNAL OF MATERIALS CHEMISTRY C , vol.10, no.22, 8496-8535.
CAN, AYŞE, Antonio Facchetti, And HAKAN USTA. "Indenofluorenes for organic optoelectronics: the dance of fused five- and six-membered rings enabling structural versatility," JOURNAL OF MATERIALS CHEMISTRY C , vol.10, no.22, 8496-8535, 2022
CAN, AYŞE Et Al. "Indenofluorenes for organic optoelectronics: the dance of fused five- and six-membered rings enabling structural versatility." JOURNAL OF MATERIALS CHEMISTRY C , vol.10, no.22, pp.8496-8535, 2022
CAN, A. Facchetti, A. And USTA, H. (2022) . "Indenofluorenes for organic optoelectronics: the dance of fused five- and six-membered rings enabling structural versatility." JOURNAL OF MATERIALS CHEMISTRY C , vol.10, no.22, pp.8496-8535.
@article{article, author={AYŞE CAN Et Al. }, title={Indenofluorenes for organic optoelectronics: the dance of fused five- and six-membered rings enabling structural versatility}, journal={JOURNAL OF MATERIALS CHEMISTRY C}, year=2022, pages={8496-8535} }