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调节基于聚乳酸/聚己内酯的电纺纳米纤维毡的结构响应:溶剂体系介电常数和电导率的作用

Tuning structural-response of PLA/PCL based electrospun nanofibrous mats: Role of dielectric-constant and electrical-conductivity of the solvent system.

作者信息

Sharma Deepika, Satapathy Bhabani K

机构信息

Department of Materials Scienc e and Engineering, Indian Institute of Technology Delhi, New Delhi, India.

出版信息

J Biomater Sci Polym Ed. 2022 Oct;33(14):1759-1793. doi: 10.1080/09205063.2022.2073427. Epub 2022 May 9.

DOI:10.1080/09205063.2022.2073427
PMID:35510916
Abstract

The role of optimum solvent systems on the fabrication of uniform, bead-free electrospun-nanofibrous-mats (ENMs) of polylactic acid (PLA), poly(ε-caprolactone) (PCL), and their blends, is investigated. The solvent systems influenced the fiber-diameters, morphology, crystallinity, thermal stability, hydrophobicity, quasi-static mechanical, and solid-state visco-elastic responses of the ENMs. Defect-free ENMs were obtained by using CF/DMF (80:20 v/v) binary solvent system while showing a relatively higher extent of crystallinity (PLA/PCL blend ∼ 34%), lower hydrophobicity (PLA ∼ 117), higher strength (PLA ∼ 6 MPa), and moduli (PLA ∼ 305 MPa) for PLA and PLA/PCL blend systems whereas a higher strain-at-break (∼ 82%) was shown by PCL based ENMs. PLA/PCL blend based ENMs fabricated using DCM/DMF (80:20 v/v) solvent-mixture exhibited comparatively lower crystallinity (∼ 25%) but higher fiber diameter (1.03 ± 0.21 µm), strain-at-break (∼ 155%), and hydrophobicity (∼ 130) compared to CF/DMF (80:20 v/v) system. Dynamic mechanical analysis (DMA) revealed the structural relaxation behaviors indicating the intrinsic structural deformability and flexibility of the mats. The study demonstrated the systematic role of solvent characteristics in terms of their volatility, dielectric constant, and solvent-mixture composition on the electro-spinnability and fabrication of high-strength, deformable, hydrophobic, bead-free ENMs with near monodisperse fibrous assemblies for biomedical applications.

摘要

研究了最佳溶剂体系对聚乳酸(PLA)、聚己内酯(PCL)及其共混物制备均匀、无珠电纺纳米纤维毡(ENM)的作用。溶剂体系影响了ENM的纤维直径、形态、结晶度、热稳定性、疏水性、准静态力学和固态粘弹性响应。使用CF/DMF(80:20 v/v)二元溶剂体系可获得无缺陷的ENM,同时PLA和PLA/PCL共混体系表现出相对较高的结晶度(PLA/PCL共混物约34%)、较低的疏水性(PLA约117)、较高的强度(PLA约6MPa)和模量(PLA约305MPa),而基于PCL的ENM表现出较高的断裂伸长率(约82%)。与CF/DMF(80:20 v/v)体系相比,使用DCM/DMF(80:20 v/v)溶剂混合物制备的基于PLA/PCL共混物的ENM结晶度相对较低(约25%),但纤维直径较大(1.03±0.21μm)、断裂伸长率较高(约155%)和疏水性较高(约130)。动态力学分析(DMA)揭示了结构松弛行为,表明了毡的固有结构可变形性和柔韧性。该研究证明了溶剂特性在其挥发性、介电常数和溶剂混合物组成方面对电纺丝性能以及制备用于生物医学应用的具有近单分散纤维组件的高强度、可变形、疏水性、无珠ENM的系统作用。

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