Lee, Y.; Raju, T.B.; Yeom, H.; Gopikrishna, P.; Kim, K.; Cho, H.W.; Moon, J.W.; Cho, J.H.; Kim, J.Y.; Kim, B.
Alkyl Chain Engineering of Low Bandgap Non-Fullerene Acceptors for High-Performance Organic Solar Cells: Branched vs. Linear Alkyl Side Chains. Polymers 2022, 14, 3812.
https://doi.org/10.3390/polym14183812
AMA Style
Lee Y, Raju TB, Yeom H, Gopikrishna P, Kim K, Cho HW, Moon JW, Cho JH, Kim JY, Kim B.
Alkyl Chain Engineering of Low Bandgap Non-Fullerene Acceptors for High-Performance Organic Solar Cells: Branched vs. Linear Alkyl Side Chains. Polymers. 2022; 14(18):3812.
https://doi.org/10.3390/polym14183812
Chicago/Turabian Style
Lee, Youngwan, Telugu Bhim Raju, Hyerim Yeom, Peddaboodi Gopikrishna, Kwangmin Kim, Hye Won Cho, Jung Woo Moon, Jeong Ho Cho, Jin Young Kim, and BongSoo Kim.
2022. "Alkyl Chain Engineering of Low Bandgap Non-Fullerene Acceptors for High-Performance Organic Solar Cells: Branched vs. Linear Alkyl Side Chains" Polymers 14, no. 18: 3812.
https://doi.org/10.3390/polym14183812
APA Style
Lee, Y., Raju, T. B., Yeom, H., Gopikrishna, P., Kim, K., Cho, H. W., Moon, J. W., Cho, J. H., Kim, J. Y., & Kim, B.
(2022). Alkyl Chain Engineering of Low Bandgap Non-Fullerene Acceptors for High-Performance Organic Solar Cells: Branched vs. Linear Alkyl Side Chains. Polymers, 14(18), 3812.
https://doi.org/10.3390/polym14183812