Zhang Zhongtian, Pinnaratip Rattapol, Ong Keat G, Lee Bruce P
Michigan Technological University, 1400 Townsend Drive, 49931, USA.
J Appl Polym Sci. 2020 Mar 10;137(10). doi: 10.1002/app.48451. Epub 2019 Sep 6.
Change in mechanical property of a degrading adhesive is critical to its performance. However, characterization of degradation behavior is often limited to tracking its mass loss. 4-armed PEG end modified with dopamine (PEG-DA) was used as a model bioadhesive to correlate its change in mass with change in mechanical property. Shear modulus () was calculated based on the mass and average molecular weight between crosslinks of PEG-DA, while the storage modulus () was determined by oscillatory rheometry. decreased slowly within the first week of degradation (10% reduction by week 2), while decreased by 60% during the same period. This large discrepancy is due to the partially disconnected and elastically ineffective PEG polymer, which is trapped within the adhesive network. This resulted in minimal mass change and higher calculated value during the earlier time points. Therefore, tracking mass loss profile alone is inadequate to completely describe the degradation behavior of an adhesive. Additionally, PEG-DA was coated onto magnetoelastic (ME) sensors, and the change in the resonance amplitude of the sensor corresponded well with dry mass loss of PEG-DA. ME sensing provide a non-destructive method to track the mass loss of the coated adhesive.
降解型粘合剂机械性能的变化对其性能至关重要。然而,降解行为的表征通常仅限于追踪其质量损失。用多巴胺修饰的四臂聚乙二醇(PEG-DA)用作模型生物粘合剂,以关联其质量变化与机械性能变化。基于PEG-DA的质量和交联之间的平均分子量计算剪切模量(),而储能模量()通过振荡流变学测定。在降解的第一周内缓慢下降(到第2周减少10%),而在同一时期下降了60%。这种巨大差异是由于部分断开且弹性无效的PEG聚合物被困在粘合剂网络中。这导致在早期时间点质量变化最小且计算出的 值较高。因此,仅追踪质量损失曲线不足以完全描述粘合剂的降解行为。此外,将PEG-DA涂覆在磁弹性(ME)传感器上,传感器共振幅度的变化与PEG-DA的干质量损失良好对应。ME传感提供了一种追踪涂覆粘合剂质量损失的非破坏性方法。