Ma Li, Shi Tong, Zhang Zhaoyun, Liu Xixi, Wang Hui
College of Safety Science and Engineering, Xi'an University of Science and Technology, Xi'an 710054, China.
Jinduicheng Molybdenum Industry Co., Ltd., Xi'an 710077, China.
Gels. 2023 Aug 18;9(8):667. doi: 10.3390/gels9080667.
Thermosensitive hydrogels have been receiving attention in the development of fire extinguishing agents due to their stimuli responsivity. Conventional hydrogels are limited by their slow response rate, and their wettability has not been studied systematically. In the present study, a concentrate of a thermosensitive porous system has been successfully synthesized by adding NaCO/CHCOOH as a foaming agent into the mixture of hydroxypropyl methylcellulose (HPMC)/polyethylene glycol (PEG)/chitosan (CS). The systems with different concentrations were obtained by diluting the concentrate with water. Thermosensitivity, surface tension and contact angle were characterized. In addition, spreadability, wettability and adhesivity were investigated systematically. Results showed that the systems with a concentration greater than 15 wt% exhibited outstanding performance of thermosensitivity and coagulability. A total of 20 wt% of the system has the best spreadability and wettability on the wood surface, most likely due to favorable contributions brought by both adequate viscosity and hydrophilicity. The adhesive force and surface-free energy of the pre-gel droplet that reached deposition on the wood surface decreased by 46.78% and 20.71%, respectively. The gel has a great capacity of water retention over a long period of time, which makes this porous gel the best system when it comes to its wettability and adhesiveness towards the chosen wood surface. The equilibrium surface tension decreased by 45.50% compared with water. HPMC/PEG/CS thermosensitive porous hydrogel with excellent wettability presented wide-ranging possibilities for the further development of fire suppression agents of fast phase-transition thermosensitive hydrogel.
由于其刺激响应性,热敏水凝胶在灭火剂的开发中受到关注。传统水凝胶受到其缓慢响应速率的限制,并且其润湿性尚未得到系统研究。在本研究中,通过将NaCO/CHCOOH作为发泡剂添加到羟丙基甲基纤维素(HPMC)/聚乙二醇(PEG)/壳聚糖(CS)的混合物中,成功合成了一种热敏多孔体系浓缩物。通过用水稀释浓缩物获得不同浓度的体系。对热敏性、表面张力和接触角进行了表征。此外,还系统地研究了铺展性、润湿性和粘附性。结果表明,浓度大于15 wt%的体系表现出优异的热敏性和凝固性。该体系20 wt%时在木材表面具有最佳的铺展性和润湿性,这很可能是由于适当的粘度和亲水性共同带来的有利作用。在木材表面达到沉积的预凝胶液滴的粘附力和表面自由能分别降低了46.78%和20.71%。该凝胶具有很强的长期保水能力,这使得这种多孔凝胶在对所选木材表面的润湿性和粘附性方面成为最佳体系。与水相比,平衡表面张力降低了45.50%。具有优异润湿性的HPMC/PEG/CS热敏多孔水凝胶为快速相变热敏水凝胶灭火剂的进一步开发提供了广泛的可能性。