Chen Jiang-Xing, Chen Yu-Guo, Ma Yu-Qiang
National Laboratory of Solid State Microstructures and Department of Physics, Nanjing University, Nanjing 210093, China.
Soft Matter. 2016 Feb 14;12(6):1876-83. doi: 10.1039/c5sm02647d. Epub 2015 Dec 18.
Synthetic chemically powered nanomotors possessing the ability of chemotaxis are desirable for target cargo delivery and self-assembly. The chemotactic properties of a sphere dimer motor, composed of linked catalytic and inactive monomers, are studied in a gradient field of fuel. Particle-based simulation is carried out by means of hybrid molecular dynamics/multiparticle collision dynamics. The detailed tracking and motion analysis describing the running and tumbling of the sphere dimer motor in the process of chemotaxis are investigated. Physical factors affecting chemotactic velocity are discussed, and quantitative relations are presented. The influence of the geometry of sphere dimer motors on the chemotactic dynamics is explored, which is beneficial for the design of motors with high sensitivity for detecting the surrounding environment.
具有趋化能力的合成化学驱动纳米马达对于靶向货物递送和自组装而言是很有必要的。由相连的催化单体和非活性单体组成的球形二聚体马达的趋化特性,在燃料梯度场中进行了研究。基于粒子的模拟通过混合分子动力学/多粒子碰撞动力学来进行。研究了描述球形二聚体马达在趋化过程中运行和翻滚的详细跟踪及运动分析。讨论了影响趋化速度的物理因素,并给出了定量关系。探索了球形二聚体马达的几何形状对趋化动力学的影响,这有利于设计对周围环境具有高灵敏度检测能力的马达。