Chen, P.-H.; Chen, C.-W.; Chan, T.-H.; Lin, H.-Y.; Tuan, K.-L.; Su, C.-S.; Tsai, J.-C.; Lin, F.-H.
Foaming of Bio-Based PLA/PBS/PBAT Ternary Blends with Added Nanohydroxyapatite Using Supercritical CO2: Effect of Operating Strategies on Cell Structure. Molecules 2025, 30, 2056.
https://doi.org/10.3390/molecules30092056
AMA Style
Chen P-H, Chen C-W, Chan T-H, Lin H-Y, Tuan K-L, Su C-S, Tsai J-C, Lin F-H.
Foaming of Bio-Based PLA/PBS/PBAT Ternary Blends with Added Nanohydroxyapatite Using Supercritical CO2: Effect of Operating Strategies on Cell Structure. Molecules. 2025; 30(9):2056.
https://doi.org/10.3390/molecules30092056
Chicago/Turabian Style
Chen, Pei-Hua, Chin-Wen Chen, Tzu-Hsien Chan, Hsin-Ying Lin, Ke-Ling Tuan, Chie-Shaan Su, Jung-Chin Tsai, and Feng-Huei Lin.
2025. "Foaming of Bio-Based PLA/PBS/PBAT Ternary Blends with Added Nanohydroxyapatite Using Supercritical CO2: Effect of Operating Strategies on Cell Structure" Molecules 30, no. 9: 2056.
https://doi.org/10.3390/molecules30092056
APA Style
Chen, P.-H., Chen, C.-W., Chan, T.-H., Lin, H.-Y., Tuan, K.-L., Su, C.-S., Tsai, J.-C., & Lin, F.-H.
(2025). Foaming of Bio-Based PLA/PBS/PBAT Ternary Blends with Added Nanohydroxyapatite Using Supercritical CO2: Effect of Operating Strategies on Cell Structure. Molecules, 30(9), 2056.
https://doi.org/10.3390/molecules30092056