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- W4214894082 endingPage "1025" @default.
- W4214894082 startingPage "1025" @default.
- W4214894082 abstract "The impact of plastics on the environment can be mitigated by employing biobased and/or biodegradable materials (i.e., bioplastics) instead of the traditional commodities. In this context, poly (butylene succinate) (PBS) emerges as one of the most promising alternatives due to its good mechanical, thermal, and barrier properties, making it suitable for use in a wide range of applications. Still, the PBS has some drawbacks, such as its high crystallinity, which must be overcome to position it as a real and viable alternative to commodities. This contribution covers the actual state-of-the-art of the PBS through different sections. The first section reviews the different synthesis routes, providing a complete picture regarding the obtained molecular weights and the greener alternatives. Afterward, we examine how different strategies such as random copolymerization and the incorporation of fillers can effectively modulate PBS properties to satisfy the needs for different applications. The impact of these strategies is evaluated in the crystallization behavior, crystallinity, mechanical and barrier properties, and biodegradation. The biodegradation is carefully analyzed, highlighting the wide variety of methodologies existing in the literature to measure PBS degradation through different routes (hydrolytic, enzymatic, and soil)." @default.
- W4214894082 created "2022-03-05" @default.
- W4214894082 creator A5005033485 @default.
- W4214894082 creator A5042821400 @default.
- W4214894082 creator A5069338202 @default.
- W4214894082 creator A5077854120 @default.
- W4214894082 date "2022-03-03" @default.
- W4214894082 modified "2023-10-17" @default.
- W4214894082 title "A Review on Current Strategies for the Modulation of Thermomechanical, Barrier, and Biodegradation Properties of Poly (Butylene Succinate) (PBS) and Its Random Copolymers" @default.
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