Mancino Raffaele, Caccavo Diego, Barba Anna Angela, Lamberti Gaetano, Biasin Alice, Cortesi Angelo, Grassi Gabriele, Grassi Mario, Abrami Michela
Department of Industrial Engineering, University of Salerno, 84084 Fisciano, SA, Italy.
Eng4Life Srl, Via Circumvallazione 39, 83100 Avellino, AV, Italy.
Gels. 2023 Sep 20;9(9):765. doi: 10.3390/gels9090765.
A cryogel is a cross-linked polymer network with different properties that are determined by its manufacturing technique. The formation of a cryogel occurs at low temperatures and results in a porous structure whose pore size is affected by thermal conditions. The adjustable pore sizes of cryogels make them attractive for diverse applications. In this study, the influence of the external operational temperature, which affects the cooling and freezing rates, on the production of cryogels with 2% / agarose is investigated. Moreover, a mathematical model is developed to simulate the cryogel production process and provide an initial estimate of the pore size within the structure. The predictions of the model, supported by qualitative light microscopy images, demonstrate that cryogels produced at higher process temperatures exhibit larger pore sizes. Moreover, the existence of pore size distribution within the gel structure is confirmed. Finally, stress relaxation tests, coupled with an image analysis, validates that cryogels produced at lower temperatures possess a higher stiffness and slower water release rates.
冷冻凝胶是一种具有不同特性的交联聚合物网络,其特性由制造技术决定。冷冻凝胶的形成发生在低温下,并导致形成一种多孔结构,其孔径受热条件影响。冷冻凝胶可调节的孔径使其在各种应用中具有吸引力。在本研究中,研究了影响冷却和冷冻速率的外部操作温度对含2%琼脂糖的冷冻凝胶生产的影响。此外,还开发了一个数学模型来模拟冷冻凝胶的生产过程,并提供对结构内孔径的初步估计。该模型的预测结果得到了定性光学显微镜图像的支持,表明在较高工艺温度下生产的冷冻凝胶具有更大的孔径。此外,还证实了凝胶结构内存在孔径分布。最后,通过应力松弛测试和图像分析验证,在较低温度下生产的冷冻凝胶具有更高的刚度和更慢的水释放速率。