Sans Jordi, Azevedo Gonçalves Ingrid, Quintana Robert
Materials Research and Technology Department, Luxembourg Institute of Science and Technology, Esch/Alzette, L-4362, Luxembourg.
Departament d'Enginyeria Quínica EEBE Universitat Politècnica de Catalunya, C/ Eduard Maristany, 10-14, Barcelona, 08019, Spain.
Small. 2024 Jul;20(30):e2312041. doi: 10.1002/smll.202312041. Epub 2024 Mar 4.
Despite the considerable significance of utilizing ultra-thin film (utf) hydrogels as multipurpose platforms for biomedical applications, there is still an important lack of adequate characterization techniques suitable for such materials. In this Perspective, the use of quartz crystal microbalance with dissipation (QCM-D) coupled with spectral ellipsometry (SE) is presented as a potential tool for the complete characterization of utf-hydrogels due to its nanometric sensitivity and high versatility. Herein, the fundaments for utf-hydrogel characterization are settled down as far as the QCM-D/SE response is explored under a wide range of different in operando wet working conditions measurements such as temperature or liquid media, among others. Therefore, the design of measuring protocols capable to perform is proposed and compiled, for the first time, complete and precise characterization of the cross-link density, thickness variations (swelling ratio determination), stability analyses, and mechanical studies (including the simultaneous generation of stress-strain curves and the evaluation of the viscoelastic; leading to the final determination of the Poisson's ratio) under different in operando conditions. Finally, the future challenges and implications for the general characterization of soft-thin films are discussed.
尽管将超薄膜(utf)水凝胶用作生物医学应用的多功能平台具有相当重要的意义,但仍然严重缺乏适用于此类材料的充分表征技术。在本观点文章中,提出将具有耗散功能的石英晶体微天平(QCM-D)与光谱椭偏仪(SE)结合使用,作为一种潜在工具,用于全面表征utf水凝胶,因为它具有纳米级灵敏度和高度通用性。在此,在一系列不同的原位湿工作条件测量(如温度或液体介质等)下探索QCM-D/SE响应时,确定了utf水凝胶表征的基础。因此,首次提出并汇编了能够进行测量的方案设计,以在不同的原位条件下对交联密度、厚度变化(溶胀率测定)、稳定性分析和力学研究(包括同时生成应力-应变曲线和评估粘弹性,最终确定泊松比)进行完整而精确的表征。最后,讨论了软薄膜一般表征面临的未来挑战和影响。