Department of Forest Biomaterials, North Carolina State University, Raleigh, North Carolina 27607, United States.
Edward P. Fitts Department of Industrial and Systems Engineering, North Carolina State University, Raleigh, North Carolina 27607, United States.
Biomacromolecules. 2024 Sep 9;25(9):5889-5901. doi: 10.1021/acs.biomac.4c00578. Epub 2024 Aug 21.
Hydrogels, typically favored for 3D printing due to their viscoelasticity, are now trending toward ecofriendly alternatives amid growing environmental concerns. In this study, we crafted cellulose-based hydrogels, specifically employing cellulose acetate sulfate (CAS). By keeping the acetyl group substitution degree (DS = 1.8) and CAS molecular weight constant, we varied rheological properties by adjusting sulfate group substitution (DS = 0.4, 0.7, and 1.0) and CAS concentration (2-5 wt %). Rheological characterizations, including shear-thinning, yield stress, and thixotropy, were performed to identify optimal conditions for formulating CAS hydrogel ink in direct ink writing for 3D printing under selected experimental conditions. Based on rheological findings, CAS hydrogels with DS 0.7 and concentration of 4 wt % was used for 3D printing, with subsequent evaluation of printing metrics. Additionally, the effect of ionic cross-linking using Ca ions on the structural integrity of 3D-printed structures was evaluated, demonstrating effective preservation through reinforced polymer networks. The shrinking and swelling behaviors of the 3D-printed structures were also significantly affected by this ionic cross-linking. Building on these findings, this work could broaden the range of cellulose derivatives available for the preparation of cellulose-based hydrogels for 3D printing.
水凝胶由于其粘弹性而通常被优先用于 3D 打印,而在环境问题日益严重的情况下,它们正朝着环保替代品的趋势发展。在这项研究中,我们制备了基于纤维素的水凝胶,特别是使用了硫酸纤维素酯(CAS)。通过保持乙酰基取代度(DS = 1.8)和 CAS 分子量不变,我们通过调整硫酸根取代度(DS = 0.4、0.7 和 1.0)和 CAS 浓度(2-5wt%)来改变流变性能。进行了流变特性分析,包括剪切稀化、屈服应力和触变,以确定在选定实验条件下在直接墨水书写中为 3D 打印配制 CAS 水凝胶墨水的最佳条件。基于流变学发现,使用 DS 为 0.7 且浓度为 4wt%的 CAS 水凝胶进行 3D 打印,并随后评估打印指标。此外,还评估了使用 Ca 离子进行离子交联对 3D 打印结构的结构完整性的影响,通过增强的聚合物网络证明了有效的保存。3D 打印结构的收缩和溶胀行为也受到这种离子交联的显著影响。基于这些发现,这项工作可以拓宽可用于制备用于 3D 打印的纤维素基水凝胶的纤维素衍生物的范围。