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Effects of Rutile–TiO2 Nanoparticles on Accelerated Weathering Degradation of Poly(Lactic Acid)

机译:金红石-TiO2纳米颗粒对聚乳酸加速风化降解的影响

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摘要

The effect of accelerated weathering on poly(lactic acid) (PLA) and a PLA nanocomposite with rutile titanium (IV) dioxide (rutile–TiO ) was investigated. The accelerated weathering test applied consecutive steps of ultraviolet (UV) (at 340 nm and 0.76 W m irradiance) and moisture at 50 °C for 2000 h, following the ASTM D4329 standard. The morphology, chemical structure, molecular weight, crystallization, as well as mechanical and thermal properties were thoroughly studied. Samples were characterized after 500 h, 1000 h and 2000 h exposure. Different degradation mechanisms were proposed to happen during the weathering exposure and confirmed based on the experimental data. The PLA and PLA/TiO surfaces presented holes and increasing roughness over the exposure time. The molecular weight of the weathered samples decreased due to chain scission during the degradation processes. Thermal stability decreased in the presence of TiO and a double melting peak was observed for the PLA/TiO nanocomposite. A general improvement in the mechanical properties of the PLA/TiO nanocomposite was observed over time during the accelerated weathering analysis up to 1000 h of exposure time. After 2000 h of weathering exposure, the PLA and PLA/TiO became extremely brittle and lost their ductile properties. This was ascribed to a significant increase in the degree of crystallinity upon weathering, which was accelerated in the presence of TiO . Atomic force microscopy (AFM) using amplitude modulation–frequency modulation (AM–FM) tool confirmed the mechanical changes in the surface area of the PLA samples after accelerated weathering exposure. The stiffness and Young’s modulus achieved higher values than the unweathered ones up to 1000 h of exposure time. The changes in the physical and chemical properties of PLA/TiO over the ageing time confirm the photocatalytic activity of rutile–TiO .
机译:研究了加速风化对聚乳酸(PLA)和金红石型二氧化钛(IV)(金红石-TiO)的PLA纳米复合材料的影响。加速耐候性测试遵循ASTM D4329标准,连续步骤使用紫外线(UV)(在340 nm和0.76 W m的辐照度)和50°C的湿度下持续2000 h。对其形态,化学结构,分子量,结晶以及机械和热学性质进行了深入研究。暴露500 h,1000 h和2000 h后对样品进行表征。提出了在风化暴露期间发生不同的降解机制,并根据实验数据进行了确认。在暴露时间内,PLA和PLA / TiO表面呈现出孔洞并增加了粗糙度。由于降解过程中的断链,风化样品的分子量降低。在TiO存在下,热稳定性降低,并且PLA / TiO纳米复合材料观察到双熔化峰。在加速风化分析中,随着暴露时间的延长,观察到PLA / TiO纳米复合材料的机械性能随时间的推移总体上得到了改善,时间长达1000小时。在暴露了2000小时后,PLA和PLA / TiO变得非常脆,失去了韧性。这归因于风化时结晶度的显着增加,这在TiO 2的存在下被加速。使用振幅调制-频率调制(AM-FM)工具的原子力显微镜(AFM)证实了加速风化暴露后PLA样品表面积的机械变化。在1000小时的暴露时间内,其刚度和杨氏模量比未风化的更高。随着时间的推移,PLA / TiO的物理和化学性质的变化证实了金红石-TiO的光催化活性。

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