论文标题

单个活性二色立方体在应用领域的扩散

Diffusion of single active-dipolar cubes in applied fields

论文作者

Kaiser, Martin, Martinez, Yeimy, Schmidt, Annette M., Sánchez, Pedro A., Kantorovich, Sofia S.

论文摘要

“主动物质”是指在科学的多个科学领域和截然不同的尺度上追求将环境能量转化为动能的一类超平衡系统。在显微镜尺度上,一个重要的挑战在于由于热波动而尤其是在纳米尺寸系统中,颗粒的重新定位过度,以创建非随机,定向运动,这是广泛可能的应用所需的指向运动。在本文中,我们采用了分子动力学模拟来表明,可以在中等强的施加磁场的帮助下,可以在预定的方向上增强自我播种偶极纳米管的扩散,从而覆盖了热波动的效果。此外,我们表明扩散方向是通过立方体净内部磁化的方向给出的。这可用于通过实验确定合成活性钴铁氧体纳米容器中的后者。

"Active matter" refers to a class of out-of-equilibrium systems whose ability to transform environmental energy to kinetic energy is sought after in multiple fields of science and at very different length scales. At microscopic scales, an important challenge lies in overpowering the particles reorientation due to thermal fluctuations, especially in nano-sized systems, to create non-random, directed motion, needed for a wide range of possible applications. In this article, we employ molecular dynamics simulations to show that the diffusion of a self-propelling dipolar nanocube can be enhanced in a pre-defined direction with the help of a moderately strong applied magnetic field, overruling the effect of the thermal fluctuations. Furthermore, we show that the direction of diffusion is given by the orientation of the net internal magnetisation of the cube. This can be used to determine experimentally the latter in synthetically crafted active cobalt ferrite nanocubes.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源