He Tao, Liu Shishuo, Yang Yonghui, Chen Xuebo
School of Electronic and Information Engineering, University of Science and Technology Liaoning, Anshan 114051, China.
Micromachines (Basel). 2024 Nov 29;15(12):1443. doi: 10.3390/mi15121443.
The advent of self-propelled micro/nanomotors represents a paradigm shift in the field of environmental remediation, offering a significant enhancement in the efficiency of conventional operations through the exploitation of the material phenomenon of active motion. Despite the considerable promise of micro/nanomotors for applications in environmental remediation, there has been a paucity of reviews that have focused on this area. This review identifies the current opportunities and challenges in utilizing micro/nanomotors to enhance contaminant degradation and removal, accelerate bacterial death, or enable dynamic environmental monitoring. It illustrates how mobile reactors or receptors can dramatically increase the speed and efficiency of environmental remediation processes. These studies exemplify the wide range of environmental applications of dynamic micro/nanomotors associated with their continuous motion, force, and function. Finally, the review discusses the challenges of transferring these exciting advances from the experimental scale to larger-scale field applications.
自驱动微纳马达的出现代表了环境修复领域的范式转变,通过利用主动运动的物质现象,显著提高了传统操作的效率。尽管微纳马达在环境修复应用方面前景广阔,但专注于该领域的综述却很少。本综述确定了利用微纳马达增强污染物降解和去除、加速细菌死亡或实现动态环境监测方面的当前机遇和挑战。它阐述了移动反应器或受体如何能显著提高环境修复过程的速度和效率。这些研究例证了与动态微纳马达的持续运动、力和功能相关的广泛环境应用。最后,本综述讨论了将这些令人振奋的进展从实验规模转化为更大规模现场应用所面临的挑战。