Sivalingam S, Balaji D, Mahendran R, Sathishkumar M, Rajeshkumar L
Department of Mechanical Engineering, JJ College of Engineering and Technology, Tiruchirapalli, Tamil Nadu, India.
Centre for Research and Development, KPR Institute of Engineering and Technology, Coimbatore, Tamil Nadu, India.
iScience. 2025 Jun 2;28(7):112810. doi: 10.1016/j.isci.2025.112810. eCollection 2025 Jul 18.
The modern world demands sophisticated materials by modifying every aspect of each atom for further acceleration in any specific domain. Fire resistant materials are also the most researched topic of materialists as this open avenue for various fire-related applications. Development of sustainable materials might reduce the harmful environmental effects of the synthetic materials. Thermosensitive hydrogels are specifically used for high temperature and fire-retardant applications. The synthesis of thermosensitive hydrogels from a natural material has been focused on obtaining a sustainable biomaterial. For a better understanding of its thermal behavior, various temperature-related properties were also reviewed. This review focuses on synthesis of thermosensitive hydrogel from natural sources, thermal properties, and future scope through patent landscape analysis. From the review, it was inferred that the thermosensitive hydrogels synthesized from the natural materials cannot only be effectively employed in high temperature and fire retardance but also act as sustainable materials for such applications.
现代世界通过改变每个原子的各个方面来需求复杂的材料,以在任何特定领域进一步加速发展。耐火材料也是材料学家研究最多的课题,因为这为各种与火相关的应用开辟了道路。可持续材料的开发可能会减少合成材料对环境的有害影响。热敏水凝胶专门用于高温和阻燃应用。从天然材料合成热敏水凝胶一直专注于获得可持续的生物材料。为了更好地理解其热行为,还综述了各种与温度相关的特性。本综述通过专利态势分析,重点关注天然来源热敏水凝胶的合成、热性能及未来发展前景。从综述中可以推断,由天然材料合成的热敏水凝胶不仅可以有效地用于高温和阻燃,而且还可作为此类应用的可持续材料。