Chen Yang, Zhu Fangyan, Leng Jiantao, Ying Tianquan, Jiang Jin-Wu, Zhou Quan, Chang Tienchong, Guo Wanlin, Gao Huajian
Shanghai Institute of Applied Mathematics and Mechanics, Shanghai Key Laboratory of Mechanics in Energy Engineering, Shanghai Frontier Science Center of Mechanoinformatics, School of Mechanics and Engineering Science, Shanghai University, Shanghai 200072, China.
Joint-Research Center for Computational Materials, Zhejiang Laboratory, Hangzhou 311100, China.
Proc Natl Acad Sci U S A. 2023 Aug;120(31):e2220500120. doi: 10.1073/pnas.2220500120. Epub 2023 Jul 24.
Regulating the motion of nanoscale objects on a solid surface is vital for a broad range of technologies such as nanotechnology, biotechnology, and mechanotechnology. In spite of impressive advances achieved in the field, there is still a lack of a robust mechanism which can operate under a wide range of situations and in a controllable manner. Here, we report a mechanism capable of controllably driving directed motion of any nanoobjects (e.g., nanoparticles, biomolecules, etc.) in both solid and liquid forms. We show via molecular dynamics simulations that a nanoobject would move preferentially away from the fluctuating region of an underlying substrate, a phenomenon termed fluctuotaxis-for which the driving force originates from the difference in atomic fluctuations of the substrate behind and ahead of the object. In particular, we find that the driving force can depend quadratically on both the amplitude and frequency of the substrate and can thus be tuned flexibly. The proposed driving mechanism provides a robust and controllable way for nanoscale mass delivery and has potential in various applications including nanomotors, molecular machines, etc.
调控纳米级物体在固体表面的运动对于纳米技术、生物技术和机械技术等众多技术领域至关重要。尽管该领域已取得了令人瞩目的进展,但仍缺乏一种能在广泛情况下以可控方式运行的强大机制。在此,我们报告了一种能够可控地驱动任何固态和液态纳米物体(例如纳米颗粒、生物分子等)进行定向运动的机制。我们通过分子动力学模拟表明,纳米物体会优先从底层基底的波动区域移开,这种现象被称为波动趋性——其驱动力源自物体前后基底原子波动的差异。特别是,我们发现驱动力可以与基底的振幅和频率呈二次方关系,因此可以灵活调节。所提出的驱动机制为纳米级物质输送提供了一种强大且可控的方式,并在包括纳米马达、分子机器等在内的各种应用中具有潜力。