首页> 外文期刊>Journal of Polymers and the Environment >Dispersing Bacterial Cellulose Nanowhiskers in Polylactides via Electrohydrodynamic Processing
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Dispersing Bacterial Cellulose Nanowhiskers in Polylactides via Electrohydrodynamic Processing

机译:通过电液动力学方法将细菌纤维素纳米晶分散在聚乳酸中

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In the present study, hybrid electrospun polylac-tide (PLA) fibers reinforced with highly dispersed crystalline bacterial cellulose nanowhiskers (BCNW) in solution concentrations up to 15 wt% were developed and characterized. The overall aim was to encapsulate dispersed BCNW in fibers to be later re-dispersed in virgin PLA by melt compounding. Initially, the suitability of three different solvents [1,1,1,3,3,3-hexafluoro-2-propanol (HFP), acetone-chloroform and chloroform/polyethylene glycol (PEG)] for fiber production was evaluated and solutions containing 5 wt% BCNW were used to generate electrospun hybrid PLA fibers. These fibers presented a homogeneous morphology, as assessed by scanning electron microscopy, and transmission electron microscopy images demonstrated that BCNW were well distributed along the fibers. Differential scanning calorimetry analyses showed that the incorporation of PEG into the fibers resulted in a T_g drop due to a plasticization effect and decreased thermal stability as a result of low interactions between the matrix and the BCNW. Subsequently, fibers were produced from the selected solutions (HFP and acetone-chloroform) containing up to 15 wt% BCNW. As a result of the great increase in the viscosity of the solutions, lower solids contents were required, leading to a better dispersion and incorporation degree of BCNW within the fibers. HFP was found to be a more suitable solvent, since higher incorporation levels were estimated by X-ray diffraction and improved matrix-filler interactions were suggested by a slight increase in the T_g of the fibers.
机译:在本研究中,开发并表征了以浓度高达15 wt%的高度分散的结晶细菌纤维素纳米晶须(BCNW)增强的混合电纺丝聚乳酸(PLA)纤维。总体目标是将分散的BCNW包封在纤维中,然后通过熔融混合将其重新分散在纯净的PLA中。最初,评估了三种不同溶剂[1,1,1,3,3,3-六氟-2-丙醇(HFP),丙酮-氯仿和氯仿/聚乙二醇(PEG)]对纤维生产的适用性,并评估了含有5wt%的BCNW用于产生电纺杂种PLA纤维。这些纤维呈现出均匀的形态,如通过扫描电子显微镜评估的,并且透射电子显微镜图像证明BCNW沿纤维很好地分布。差示扫描量热分析表明,由于增塑作用,PEG掺入纤维导致T_g下降,并且由于基体与BCNW之间的相互作用低,导致热稳定性降低。随后,由选定的溶液(HFP和丙酮-氯仿)制成纤维,其中含有最多15 wt%的BCNW。由于溶液粘度的极大提高,因此需要较低的固体含量,从而使BCNW在纤维中的分散度和结合度更好。发现HFP是更合适的溶剂,因为通过X射线衍射估计了更高的掺入水平,并且纤维的T_g略有增加表明改善了基体与填料的相互作用。

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