Departments of Forest Biomaterials and Chemical and Biomolecular Engineering, North Carolina State University , Raleigh, North Carolina 27695, United States.
ACS Appl Mater Interfaces. 2013 Nov 27;5(22):11768-76. doi: 10.1021/am403451w. Epub 2013 Nov 13.
We produced defect-free electrospun fibers from aqueous dispersions of lignin, poly(vinyl alcohol) (PVA), and cellulose nanocrystals (CNCs), which were used as reinforcing nanoparticles. The thermomechanical performance of the lignin-based electrospun fibers and the spin-coated thin films was improved when they were embedded with CNCs. Isochronal dynamic mechanical analysis (DMA) was used to assess the viscoelastic properties of the lignin:PVA electrospun fiber mats loaded with CNCs. DMA revealed that α relaxation processes became less prominent with an increased lignin content, an effect that correlated with the loss tangent (tan δ = E″/E') and α peak (Tg) that shifted to higher temperatures. This can be ascribed to the restraint of the segmental motion of PVA in the amorphous regions caused by strong intermolecular interactions. The reinforcing effect and high humidity stability attained by addition of CNCs (5, 10, or 15 wt %) in the multicomponent fiber mats were revealed. Nanoindentation was performed to assess the elastic modulus and hardness of as-prepared and cross-section surfaces of spin-coated lignin:PVA (75:25) films loaded with CNC. The properties of the two surfaces differed, and only the trend in cross-section elastic modulus correlated with DMA results. After addition of 5 wt % CNCs, both the DMA and nanoindentation elastic modulus remained constant, while after addition of 15 wt % CNCs, both increased substantially. An indentation size effect was observed in the nanoindentation hardness, and the results provided insight into the effect of addition of CNCs on the microphysical processes controlling the yield behavior in the composites.
我们从木质素、聚乙烯醇(PVA)和纤维素纳米晶体(CNC)的水性分散体中生产出无缺陷的静电纺纤维,这些纤维被用作增强纳米颗粒。当木质素基静电纺纤维和旋涂薄膜中嵌入 CNC 时,其热机械性能得到了改善。等时动态力学分析(DMA)用于评估负载 CNC 的木质素:PVA 静电纺纤维垫的粘弹性性能。DMA 表明,随着木质素含量的增加,α 弛豫过程变得不那么明显,这种效应与损耗角正切(tan δ = E″/E')和α 峰(Tg)相关联,它们向更高的温度移动。这可以归因于强分子间相互作用导致 PVA 无定形区域中链段运动的限制。通过在多组分纤维垫中添加 CNC(5、10 或 15wt%),揭示了增强效果和高湿度稳定性。纳米压痕用于评估负载 CNC 的木质素:PVA(75:25)薄膜的预制和横截面表面的弹性模量和硬度。两个表面的性能不同,只有横截面弹性模量的趋势与 DMA 结果相关。添加 5wt%CNC 后,DMA 和纳米压痕弹性模量都保持不变,而添加 15wt%CNC 后,两者都大大增加。在纳米压痕硬度中观察到压痕尺寸效应,结果提供了对添加 CNC 对控制复合材料屈服行为的微物理过程的影响的深入了解。