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Article

Preparation and Performance of Poly(Butylene Succinate) (PBS) Composites Reinforced with Taxus Residue and Compatibilized with Branched PBS

1
State Key Laboratory of Separation Membranes and Membrane Processes, School of Textile Science and Engineering, Tiangong University, Tianjin 300387, China
2
School of Materials Science and Engineering, Shanghai University of Engineering Science, Shanghai 201620, China
3
School of Chemical Engineering and Technology, Xinjiang University, Urumqi 830017, China
*
Author to whom correspondence should be addressed.
Polymers 2025, 17(19), 2597; https://doi.org/10.3390/polym17192597
Submission received: 29 August 2025 / Revised: 18 September 2025 / Accepted: 23 September 2025 / Published: 25 September 2025

Abstract

In response to the escalating plastic pollution crisis, the development of high-performance biodegradable materials is critical. Poly(butylene succinate) (PBS) is an important biodegradable polymer as it possesses excellent biodegradability and processability. But it suffers from limitations such as low mechanical strength, poor thermal stability, and high production costs. In this study, taxus residue (TF), a waste by-product, was utilized as a reinforcing filler to reduce PBS costs while enhancing its overall performance. To address the interfacial incompatibility between TF and PBS, branched PBS (T-PBS) was introduced as a compatibilizer. The TF was surface-modified via alkali treatment and silane coupling (KH550), and a series of PBS/TF/T-PBS composites with varying T-PBS viscosity grades were prepared by melt blending. The compatibilization mechanism of T-PBS and its influence on the composite structure, crystallization behavior, thermal stability, rheological, and mechanical properties were systematically investigated. Results show that the branched structure significantly enhanced T-PBS melt strength and reactivity. The introduction of T-PBS effectively improved interfacial compatibility between TF and PBS matrix, reducing phase separation and interfacial defects. Compared to uncompatibilized PBS/TF composites, those with appropriately viscous T-PBS exhibited improved tensile strength (increased by 19.7%) and elongation at break (increased by 78.8%), while flexural strength was also maintained at an enhanced level. The branched points acted as nucleating agents, increasing the onset temperature and degree of crystallinity. In the high-temperature region, the synergistic barrier effect from TF and char residue improved thermal stability (T85% reached 408.19 °C). Rheological analysis revealed enhanced viscosity and elasticity of the system. This study provides a promising strategy and theoretical foundation for the high-value utilization of taxus waste and the development of high-performance biodegradable PBS-based composites.
Keywords: poly(butylene succinate); taxus residue; branching; biodegradable poly(butylene succinate); taxus residue; branching; biodegradable

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MDPI and ACS Style

Chen, S.; Li, S.; Wang, B.; Chen, C.; Zheng, L. Preparation and Performance of Poly(Butylene Succinate) (PBS) Composites Reinforced with Taxus Residue and Compatibilized with Branched PBS. Polymers 2025, 17, 2597. https://doi.org/10.3390/polym17192597

AMA Style

Chen S, Li S, Wang B, Chen C, Zheng L. Preparation and Performance of Poly(Butylene Succinate) (PBS) Composites Reinforced with Taxus Residue and Compatibilized with Branched PBS. Polymers. 2025; 17(19):2597. https://doi.org/10.3390/polym17192597

Chicago/Turabian Style

Chen, Shiwanyi, Shufeng Li, Bing Wang, Chen Chen, and Liuchun Zheng. 2025. "Preparation and Performance of Poly(Butylene Succinate) (PBS) Composites Reinforced with Taxus Residue and Compatibilized with Branched PBS" Polymers 17, no. 19: 2597. https://doi.org/10.3390/polym17192597

APA Style

Chen, S., Li, S., Wang, B., Chen, C., & Zheng, L. (2025). Preparation and Performance of Poly(Butylene Succinate) (PBS) Composites Reinforced with Taxus Residue and Compatibilized with Branched PBS. Polymers, 17(19), 2597. https://doi.org/10.3390/polym17192597

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