Department of Chemical and Biological Engineering , University of Sheffield , S3 1JD Sheffield , U.K.
Langmuir. 2018 Apr 10;34(14):4307-4313. doi: 10.1021/acs.langmuir.8b00310. Epub 2018 Mar 30.
Although much attention has focused on self-motile asymmetrical catalytically active "Janus" colloids as a route to enable new fluidic transport applications, the motion of symmetrical catalytically active colloids is less investigated. This is despite isotropically active colloids being more accessible and commonly used as supports for heterogeneous catalysis. Here, we addressed this by systematically investigating the motion of platinum-coated colloids capable of isotropically decomposing hydrogen peroxide. We observed the onset of collective convective flow as the colloidal volume fraction increased above a threshold. The ballistic velocities induced by the collective flow were quantified by particle tracking and were found to increase with the volume fraction. We also determined the associated increase in the Péclet number as evidence of the potential to use convection as a simple method to enhance mass transport rates. By determining the persistence lengths, we were able to correlate the magnitude of convective flow with the overall catalytic activity per unit volume. This suggests that the mechanism for the collective flow is driven by chemical activity-induced local density differences. Finally, we discussed these results in the context of potential new fluidic applications and highlighted the role that activity-induced convection may play in experiments designed to investigate self-motile catalytic systems.
虽然人们已经关注到自推进非对称催化活性“Janus”胶体作为实现新型流体制动应用的一种途径,但对称催化活性胶体的运动却较少被研究。尽管各向同性活性胶体更容易获得且通常用作多相催化的载体,但情况确实如此。在这里,我们通过系统地研究能够各向同性分解过氧化氢的铂涂层胶体的运动来解决这一问题。我们观察到,当胶体体积分数超过阈值时,集体对流开始出现。通过粒子跟踪对集体流诱导的弹道速度进行了量化,并发现其随体积分数的增加而增加。我们还确定了关联的 Peclet 数的增加,这表明对流可以作为一种简单的方法来提高传质速率。通过确定持久长度,我们能够将对流的大小与单位体积的整体催化活性相关联。这表明,集体流动的机制是由化学活性诱导的局部密度差异驱动的。最后,我们在潜在的新流体制动应用的背景下讨论了这些结果,并强调了活性诱导对流在设计用于研究自推进催化系统的实验中可能发挥的作用。