Xu Yu, Kang Jiaxiang, Sun Mingming, Shan Jiahui, Guo Wei, Zhang Qiuyu
School of Chemistry and Chemical Engineering, Northwestern Polytechnical University, Chang'an District, Xi'an, Shaanxi 710129, China.
Queen Mary University of London Engineering School, Northwestern Polytechnical University, Chang'an District, Xi'an, Shaanxi 710129, China.
J Colloid Interface Sci. 2024 Apr 15;660:953-960. doi: 10.1016/j.jcis.2024.01.047. Epub 2024 Jan 24.
Inanimate motors, driven by the difference in surface tension, provide platforms for studying the physics of characteristic motion and mimicking the complex behaviors of biological systems. However, it is challenging to endow inanimate motors with high autonomy, with an emphasis on simulating the behavior of living organisms in response to external stimuli. Herein, by applying sodium chloride (NaCl) as an external stimulus, we achieve the regulation of motion mode and chemotaxis in a self-propelled camphor system. We present a comprehensive surface/interface understanding of motion bifurcation with the increase of concentration NaCl, i.e., continuous motion to no motion via oscillatory motion. The features of motions (the speed and frequency) and the mechanisms are elucidated depending on the concentrations of NaCl and sodium dodecyl sulfate (SDS). Furthermore, the characteristic motion and chemotaxis to the salt stimulus are correlated to the dynamic breaking/reforming of the surface tension balance and gradient-type distribution phenomenon triggered by dynamic camphor dissolution, surfactant adsorption /diffusion and camphor-surfactant interaction. This work sheds light on the typical motions of inanimate motors and scrutinizes the synergy between dual additives, which will boost the design of advanced self-propelled systems with nonlinear characteristic motion.
由表面张力差异驱动的无生命马达为研究特征运动的物理原理和模拟生物系统的复杂行为提供了平台。然而,赋予无生命马达高自主性具有挑战性,重点在于模拟生物体对外界刺激的反应行为。在此,通过将氯化钠(NaCl)用作外部刺激,我们在自驱动樟脑系统中实现了运动模式和趋化性的调控。随着NaCl浓度的增加,我们对运动分岔进行了全面的表面/界面理解,即通过振荡运动从连续运动到停止运动。根据NaCl和十二烷基硫酸钠(SDS)的浓度阐明了运动特征(速度和频率)及机制。此外,对盐刺激的特征运动和趋化性与表面张力平衡的动态破坏/重建以及由动态樟脑溶解、表面活性剂吸附/扩散和樟脑 - 表面活性剂相互作用引发的梯度型分布现象相关。这项工作揭示了无生命马达的典型运动,并审视了两种添加剂之间的协同作用,这将推动具有非线性特征运动的先进自驱动系统的设计。