Dominant Role of Polypropylene Chain Architecture in Differentiating Flame Retardancy and Mechanical Performance
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Yin, S.; Guo, M.; Wang, H.; Wang, L.; Li, X.; He, J. Dominant Role of Polypropylene Chain Architecture in Differentiating Flame Retardancy and Mechanical Performance. Polymers 2026, 18, 1356. https://doi.org/10.3390/polym18111356
Yin S, Guo M, Wang H, Wang L, Li X, He J. Dominant Role of Polypropylene Chain Architecture in Differentiating Flame Retardancy and Mechanical Performance. Polymers. 2026; 18(11):1356. https://doi.org/10.3390/polym18111356
Chicago/Turabian StyleYin, Shu, Menghan Guo, Hao Wang, Lin Wang, Xiangmei Li, and Jiyu He. 2026. "Dominant Role of Polypropylene Chain Architecture in Differentiating Flame Retardancy and Mechanical Performance" Polymers 18, no. 11: 1356. https://doi.org/10.3390/polym18111356
APA StyleYin, S., Guo, M., Wang, H., Wang, L., Li, X., & He, J. (2026). Dominant Role of Polypropylene Chain Architecture in Differentiating Flame Retardancy and Mechanical Performance. Polymers, 18(11), 1356. https://doi.org/10.3390/polym18111356

