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环保型锌基金属有机框架作为聚乳酸的成核剂

Eco-friendly zinc-metal-organic framework as a nucleating agent for poly (lactic acid).

作者信息

El-Taweel Safaa H, Hassan Safaa S, Ismail Khaled M

机构信息

Chemistry Department, Faculty of Science, Cairo University, Orman, Giza 12613, Egypt; Engineering and Materials Science Department, German University in Cairo, New Cairo City, Egypt.

Chemistry Department, Faculty of Science, Cairo University, Orman, Giza 12613, Egypt.

出版信息

Int J Biol Macromol. 2024 Jun;271(Pt 2):132691. doi: 10.1016/j.ijbiomac.2024.132691. Epub 2024 May 27.

Abstract

Eco-friendly poly(L-lactic acid) (PLA) can be made more versatile, and its crystallization rate is accelerated by adding Zinc-based metal-organic framework (Zn-MOF) particles. Using differential scanning calorimetry (DSC), the non-isothermal melt crystallization behavior of biodegradable PLA nucleated by 0.3 to 3 wt% of Zn-MOF was examined. The non-isothermal melt crystallization kinetics parameters were determined using a modified Avrami model and Mo approach. Zn-MOF dramatically accelerated the crystallization process, as evidenced by several non-isothermal crystallization metrics, including the crystallization half-time and crystallization rate constant. The melt crystallization temperatures of the PLA-Zn-MOF composites, with contents of 0.7 and 1 wt%, were increased by 21 °C compared to the neat PLA. Using the Friedman isoconversional kinetic method, the neat PLA and PLA-Zn-MOF composites' effective activation energy values, ∆E, were determined. The ∆E values of PLA-Zn-MOF from 0.3 to 1 wt% Zn-MOF composites were lower than that of neat PLA. Moreover, polarized optical microscopy revealed the formation of numerous small-sized PLA spherulites upon Zn-MOF addition. The results indicate that the Zn-MOF (at concentrations of 0.7 to 1.0 wt%) can be used as an efficient nucleating agent for PLA, where it increases the melt crystallization temperature, nucleation density, and crystallinity without changing the crystalline structure, while also significantly reduces the effective activation energy and the size of spherulites. Additionally, scanning electron microscopy confirms good dispersion of Zn-MOF (0.3 to 1 wt%) within the PLA matrix.

摘要

环保型聚(L-乳酸)(PLA)可以变得更具通用性,通过添加锌基金属有机框架(Zn-MOF)颗粒可加速其结晶速率。使用差示扫描量热法(DSC),研究了由0.3至3 wt%的Zn-MOF成核的可生物降解PLA的非等温熔体结晶行为。使用改进的Avrami模型和Mo方法确定了非等温熔体结晶动力学参数。Zn-MOF显著加速了结晶过程,几个非等温结晶指标证明了这一点,包括结晶半衰期和结晶速率常数。与纯PLA相比,Zn-MOF含量为0.7 wt%和1 wt%的PLA-Zn-MOF复合材料的熔体结晶温度提高了21℃。使用Friedman等转化率动力学方法,确定了纯PLA和PLA-Zn-MOF复合材料的有效活化能值∆E。0.3至1 wt% Zn-MOF复合材料的PLA-Zn-MOF的∆E值低于纯PLA。此外,偏光显微镜显示添加Zn-MOF后形成了许多小尺寸的PLA球晶。结果表明,Zn-MOF(浓度为0.7至1.0 wt%)可作为PLA的有效成核剂,它提高了熔体结晶温度、成核密度和结晶度,而不改变晶体结构,同时还显著降低了有效活化能和球晶尺寸。此外,扫描电子显微镜证实了Zn-MOF(0.3至1 wt%)在PLA基体中的良好分散。

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