Wang Ben, Ji Fengtong, Yu Jiangfan, Yang Lidong, Wang Qianqian, Zhang Li
Department of Mechanical and Automation Engineering, The Chinese University of Hong Kong, Hong Kong, China.
Department of Mechanical and Automation Engineering, The Chinese University of Hong Kong, Hong Kong, China; Chow Yuk Ho Technology Centre for Innovative Medicine, The Chinese University of Hong Kong, Hong Kong, China; T Stone Robotics Institute, The Chinese University of Hong Kong, Hong Kong, China.
iScience. 2019 Sep 27;19:760-771. doi: 10.1016/j.isci.2019.08.026. Epub 2019 Aug 21.
Combining catalysts with active colloidal matter could keep catalysts from aggregating, a major problem in chemical reactions. We report a kind of ensemble of bubble-cross-linked magnetic colloidal swarming nanomotors (B-MCS) with enhanced catalytic activity because of the local increase of the nanocatalyst concentration and three-dimensional (3D) fluid convection. Compared with the two-dimensional swarming collective without bubbles, the integral rotation was boosted because of the dynamic dewetting and increased slip length caused by the continuously ejected tiny bubbles. The bubbles cross-link the nanocatalysts and form stack along the vertical axis, generating the 3D network-like B-MCS ensemble with high dynamic stability and low drag resistance. The generated B-MCS ensemble exhibits controllable locomotion performance when applying a rotating magnetic field. Benefiting from locally increased catalyst concentration, good mobility, and 3D fluidic convection, the B-MCS ensemble offers a promising approach to heterogeneous catalysis.
将催化剂与活性胶体物质相结合可以防止催化剂聚集,这是化学反应中的一个主要问题。我们报道了一种气泡交联磁性胶体群纳米马达(B-MCS)的组合,由于纳米催化剂浓度的局部增加和三维(3D)流体对流,其具有增强的催化活性。与没有气泡的二维群集集体相比,由于连续喷出的微小气泡导致的动态去湿和滑动长度增加,整体旋转得到了增强。气泡使纳米催化剂交联并沿垂直轴形成堆叠,生成具有高动态稳定性和低阻力的3D网络状B-MCS组合。当施加旋转磁场时,所产生的B-MCS组合表现出可控的运动性能。受益于局部增加的催化剂浓度、良好的流动性和3D流体对流,B-MCS组合为多相催化提供了一种有前景的方法。