Chongqing Key Laboratory of Inorganic Special Functional Materials, College of Chemistry and Chemical Engineering, Yangtze Normal University, Chongqing 408100, China.
Chongqing Sports Medicine Center, Southwest Hospital, The Third Military Medical University, Chongqing 400038, China.
Molecules. 2023 Mar 9;28(6):2520. doi: 10.3390/molecules28062520.
As a promising kind of functional material, highly reactive thermite energetic materials (tEMs) with outstanding reactive activation can release heat quickly at a high reaction rate after low-energy stimulation, which is widely used in sensors, triggers, mining, propellants, demolition, ordnance or weapons, and space technology. Thus, this review aims to provide a holistic view of the recent progress in the development of multifunctional highly reactive tEMs with controllable micro/nano-structures for various engineering applications via different fabricated techniques, including the mechanical mixing method, vapor deposition method, assembly method, sol-gel method, electrospinning method, and so on. The systematic classification of novel structured tEMs in terms of nano-structural superiority and exothermic performance are clarified, based on which, suggestions regarding possible future research directions are proposed. Their potential applications within these rapidly expanding areas are further highlighted. Notably, the prospects or challenges of current works, as well as possible innovative research ideas, are discussed in detail, providing further valuable guidelines for future study.
作为一种有前途的功能材料,高反应性的铝热剂高能材料(tEMs)具有出色的反应活性,在低能量刺激后可以以高反应速率快速释放热量,因此被广泛应用于传感器、触发器、采矿、推进剂、拆除、弹药或武器以及空间技术中。因此,本综述旨在通过不同的制备技术,包括机械混合法、气相沉积法、组装法、溶胶-凝胶法、静电纺丝法等,为具有可控微/纳结构的多功能高反应性 tEMs 的发展提供一个整体的视角,用于各种工程应用。根据纳米结构优势和放热性能,对新型结构 tEMs 进行了系统分类,并在此基础上提出了可能的未来研究方向的建议。进一步强调了它们在这些快速发展领域的潜在应用。值得注意的是,详细讨论了当前工作的前景或挑战以及可能的创新研究思路,为未来的研究提供了进一步有价值的指导。