Grumi Mattia, Prieto Cristina, Furtado Roselayne F, Cheng Huai N, Biswas Atanu, Limbo Sara, Cabedo Luis, Lagaron Jose M
Novel Materials and Nanotechnology Group, Institute of Agrochemistry and Food Technology (IATA), Spanish Council for Scientific Research (CSIC), Calle Catedrático Agustín Escardino Benlloch 7, 46980 Paterna, Spain.
Embrapa Agroindústria Tropical, Rua Dra. Sara Mesquita 2270, Fortaleza 60511-110, Brazil.
Polymers (Basel). 2024 May 10;16(10):1355. doi: 10.3390/polym16101355.
This study investigates the unique morphology and mechanical properties of multi-jet electrospun cashew gum (CG) when combined with high-molecular-weight polyethylene oxide (PEO) and glycerol. Cashew gum (CG) is a low-cost, non-toxic heteropolysaccharide derived from trees. Initially, the electrospinnability of aqueous solutions of cashew gum alone or in combination with PEO was evaluated. It was found that cashew gum alone was not suitable for electrospinning; thus, adding a small quantity of PEO was needed to create the necessary molecular entanglements for fiber formation. By using a single emitter with a CG:PEO ratio of 85:15, straight and smooth fibers with some defects were obtained. However, additional purification of the cashew gum solution was needed to produce more stable and defect-free straight and smooth fibers. Additionally, the inclusion of glycerol as a plasticizer was required to overcome material fragility. Interestingly, when the optimized formulation was electrospun using multiple simultaneous emitters, thicker aligned fiber bundles were achieved. Furthermore, the resulting oriented fiber mats exhibited unexpectedly high elongation at break under ambient conditions. These findings underscore the potential of this bio-polysaccharide-based formulation for non-direct water contact applications that demand elastic properties.
本研究调查了多喷射静电纺丝腰果胶(CG)与高分子量聚环氧乙烷(PEO)和甘油结合时的独特形态和力学性能。腰果胶(CG)是一种源自树木的低成本、无毒杂多糖。最初,评估了单独的腰果胶水溶液或与PEO混合的水溶液的电纺丝性。结果发现,单独的腰果胶不适合电纺丝;因此,需要添加少量PEO以形成纤维形成所需的分子缠结。通过使用CG:PEO比例为85:15的单个发射器,获得了具有一些缺陷的直且光滑的纤维。然而,需要对腰果胶水溶液进行额外纯化以生产更稳定且无缺陷的直且光滑的纤维。此外,需要加入甘油作为增塑剂以克服材料的脆性。有趣的是,当使用多个同时发射器对优化配方进行静电纺丝时,获得了更粗的排列纤维束。此外,所得的取向纤维垫在环境条件下表现出出乎意料的高断裂伸长率。这些发现突出了这种基于生物多糖的配方在需要弹性性能的非直接水接触应用中的潜力。