Division of Chemistry & Biological Chemistry, School of Physical and Mathematical Sciences, Nanyang Technological University , Singapore 637371, Singapore.
ACS Nano. 2016 May 24;10(5):5041-50. doi: 10.1021/acsnano.5b07771. Epub 2016 May 2.
Synthetic autonomously moving nano and micromotors are in the forefront of nanotechnology. Different sizes of nano and micromotors have been prepared, but the systematic study of the influence of their sizes on motion is lacking. We synthesized different sizes of tubular micro/nanomotors by membrane template-assisted electrodeposition. The influence of dimensions on the dynamics of micro/nanotubes was studied at a significantly reduced scale than rolled-up microtubes, down to the nanometer regime. Both the geometric parameters and the chemical environment can affect the dynamics of micro/nanotubes. The bubble size and ejection frequency were investigated in correlation with the velocity of micro/nanotubes. The comparison between different sizes of micro/nanotubes showed that geometric parameters of micro/nanotubes will influence the velocity of micro/nanotubes at moderate fuel concentrations. Furthermore, it also affects the activity of micro/nanotubes at low fuel concentrations and imposes limitations on the velocity at very high fuel concentrations. Nanotubes with nanometer-sized openings need a higher concentration of H2O2 to be activated. Larger tubes can possess a higher absolute value of velocity than smaller tubes, but do not necessarily have a higher velocity by body lengths per unit time. Insight into bubble ejection/propulsion cycle is also provided. The results presented here provide important implications for the consideration of dimensions in the fabrication of tubular micro/nanomotors.
合成自主运动的纳米和微米马达处于纳米技术的前沿。已经制备了不同尺寸的纳米和微米马达,但对其尺寸对运动的影响的系统研究还很缺乏。我们通过膜模板辅助电沉积合成了不同尺寸的管状微/纳米马达。在比卷绕微管显著减小的尺度(达到纳米级)下,研究了尺寸对微/纳米管动力学的影响。几何参数和化学环境都可以影响微/纳米管的动力学。气泡尺寸和喷射频率与微/纳米管的速度相关联。对不同尺寸的微/纳米管进行了比较,结果表明,在中等燃料浓度下,微/纳米管的几何参数会影响微/纳米管的速度。此外,在低燃料浓度下,它还会影响微/纳米管的活性,并对非常高的燃料浓度下的速度施加限制。纳米开口的纳米管需要更高浓度的 H2O2 才能被激活。较大的管可以具有比较小的管更高的绝对速度值,但并不一定具有更高的速度单位时间内的体长度。还提供了对气泡喷射/推进循环的深入了解。这里呈现的结果为管状微/纳米马达的制造中考虑尺寸提供了重要的启示。