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Influence of Free Volume Determined by Positron Annihilation Lifetime Spectroscopy (PALS) on Gas Permeability of Cellulose Nanocrystal Films

机译:正电子湮没寿命光谱(PALS)对纤维素纳米晶体膜气体渗透性确定的自由体积的影响

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摘要

Cellulose nanocrystals (CNCs) are of increasing interest for packaging applications because of their biodegradability, low cost, high crystallinity, and high aspect ratio. The objective of this study was to use positron annihilation lifetime spectroscopy (PALS) to investigate the free volume of CNC films with different structural arrangements (chiral nematic vs shear-oriented CNC films) and relate this information to gas barrier performance. It was found that sheared CNC films with higher CNC alignment have lower free volume and hence have more tortuosity than chiral nematic self-assembled films, which lowers gas diffusion throughout the films. The overall barrier performance of the aligned CNC film obtained in this study has a higher barrier performance than high barrier polymer films like PVOH and EVOH. Furthermore, a modified model was developed for single-component CNC films to predict the gas permeability with variation of CNC alignment with validation by the data taken.
机译:由于其生物降解性,低成本,高结晶度和高纵横比,纤维素纳米晶体(CNCs)对包装应用的兴趣增加。 本研究的目的是使用正电子湮没寿命光谱(PALS)来研究具有不同结构布置的CNC膜的自由体积(手性向列VS剪切的CNC膜),并将该信息与阻气性能相关联。 结果发现,具有较高CNC比对的剪切CNC膜具有较低的自由体积,因此具有比手性向志自组装薄膜更多的曲折性,从而降低整个薄膜的气体扩散。 本研究中获得的对准CNC膜的总阻挡性能具有比PVOH和EVOH等高阻隔聚合物膜更高的阻隔性能。 此外,开发了一种改进的模型,用于单组分CNC膜,以通过所采取的数据与验证的CNC对准变化来预测气体渗透性。

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