Chen Yufen, Gonçalves João Marcos, Ferrer Campos Rebeca, Villa Katherine
Institute of Chemical Research of Catalonia (ICIQ), The Barcelona Institute of Science and Technology (BIST), Av. Països Catalans, 16, Tarragona, E-43007, Spain.
Small. 2025 Feb;21(6):e2410901. doi: 10.1002/smll.202410901. Epub 2024 Dec 23.
Micro/nanomotors (MNMs) are highly versatile small-scale devices capable of converting external energy inputs into active motion. Among the various energy sources, light stands out due to its abundance and ability to provide spatiotemporal control. However, the effectiveness of light-driven motion in complex environments, such as biological tissues or turbid water, is often limited by light scattering and reduced penetration. To overcome these challenges, recent innovations have integrated light-based actuation with other external stimuli-such as magnetic, acoustic, and electrical fields-broadening the functional range and control of MNMs. This review highlights the cutting-edge developments in dual-energy powered MNMs, emphasizing examples where light is paired with secondary energy sources for enhanced propulsion and task performance. Furthermore, insights are offered into the fabrication techniques, biomedical applications, and the future directions of such hybrid MNMs, while addressing the remaining challenges in this rapidly evolving field.
微纳马达(MNMs)是高度通用的小型装置,能够将外部能量输入转化为主动运动。在各种能源中,光因其丰富性和提供时空控制的能力而脱颖而出。然而,在复杂环境(如生物组织或浑水)中,光驱动运动的有效性常常受到光散射和穿透能力降低的限制。为了克服这些挑战,最近的创新将基于光的驱动与其他外部刺激(如磁场、声场和电场)相结合,拓宽了微纳马达的功能范围和可控性。本综述重点介绍了双能源驱动微纳马达的前沿发展,强调了光与二次能源配对以增强推进力和任务性能的实例。此外,还深入探讨了此类混合微纳马达的制造技术、生物医学应用以及未来发展方向,同时阐述了这个快速发展领域中仍然存在的挑战。