胶体
化学
活性物质
限制
推进
光催化
纳米技术
胶粒
粒子(生态学)
化学物理
催化作用
材料科学
航空航天工程
有机化学
工程类
地质学
机械工程
海洋学
细胞生物学
生物
作者
Wendi Duan,Yijiang Mu,Xiaoyong Mo,Zhisheng Wang,Tianran Zhang,Henry Lum,Dengping Lyu,Dongwei Zhang,Runkai Zhao,Edmund C. M. Tse,Yongxiang Gao,Hao Wu,Yufeng Wang
摘要
Active colloids with the ability to self-propel and collectively organize are emerging as indispensable elements in microrobotics and soft matter physics. For chemically powered colloids, their activity is often induced by gradients of chemical species in the particle's vicinity. The direct manipulation of these gradients, however, presents a considerable challenge, thereby limiting the extent to which active colloids can be controlled. Here, we introduce a series of rationally designed molecules, denoted as chemical auxiliary (CA), that intervene with specific chemical gradients and thus unveil new capabilities for regulating the behaviors of photocatalytic active colloids. We show that CA can alter the diffusiophoretic and osmotic interactions between active colloids and their subsequent self-organization. Also, CA can tune the self-propulsion of active particles, enabling a record high propulsion speed of over 100 μm/s and endowing high salt tolerance. Furthermore, CA is instrumental in establishing dynamic, competing gradients around active particles, which signifies an in situ, noninvasive, and reversible strategy for reconfiguring between modes of colloidal activity.
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