Nakayama, Y.; Fukumoto, K.; Kusu, Y.; Tanaka, R.; Shiono, T.; Kawasaki, N.; Yamano, N.; Nakayama, A.
Synthesis, Properties, and Biodegradability of Novel Sequence-Controlled Copolyesters Composed of Glycolic Acid, Dicarboxylic Acids, and C3 or C4 Diols. Polymers 2023, 15, 1155.
https://doi.org/10.3390/polym15051155
AMA Style
Nakayama Y, Fukumoto K, Kusu Y, Tanaka R, Shiono T, Kawasaki N, Yamano N, Nakayama A.
Synthesis, Properties, and Biodegradability of Novel Sequence-Controlled Copolyesters Composed of Glycolic Acid, Dicarboxylic Acids, and C3 or C4 Diols. Polymers. 2023; 15(5):1155.
https://doi.org/10.3390/polym15051155
Chicago/Turabian Style
Nakayama, Yuushou, Keitaro Fukumoto, Yuji Kusu, Ryo Tanaka, Takeshi Shiono, Norioki Kawasaki, Naoko Yamano, and Atsuyoshi Nakayama.
2023. "Synthesis, Properties, and Biodegradability of Novel Sequence-Controlled Copolyesters Composed of Glycolic Acid, Dicarboxylic Acids, and C3 or C4 Diols" Polymers 15, no. 5: 1155.
https://doi.org/10.3390/polym15051155
APA Style
Nakayama, Y., Fukumoto, K., Kusu, Y., Tanaka, R., Shiono, T., Kawasaki, N., Yamano, N., & Nakayama, A.
(2023). Synthesis, Properties, and Biodegradability of Novel Sequence-Controlled Copolyesters Composed of Glycolic Acid, Dicarboxylic Acids, and C3 or C4 Diols. Polymers, 15(5), 1155.
https://doi.org/10.3390/polym15051155