首页> 外文期刊>Journal of the American Chemical Society >Active Patchy Colloids with Shape-Tunable Dynamics
【24h】

Active Patchy Colloids with Shape-Tunable Dynamics

机译:具有形状可调动力学的主动补片胶体

获取原文
获取原文并翻译 | 示例
           

摘要

Controlling the complex dynamics of active colloids-the autonomous locomotion of colloidal particles and their spontaneous assembly-is challenging yet crucial for creating functional, out-of-equilibrium colloidal systems potentially useful for nano- and micromachines. Herein, by introducing the synthesis of active "patchy" colloids of various low-symmetry shapes, we demonstrate that the dynamics of such systems can be precisely tuned. The low-symmetry patchy colloids are made in bulk via a cluster-encapsulation-dewetting method. They carry essential information encoded in their shapes (particle geometry, number, size, and configurations of surface patches, etc.) that programs their locomotive and assembling behaviors. Under AC electric field, we show that the velocity of particle propulsion and the ability to brake and steer can be modulated by having two asymmetrical patches with various bending angles. The assembly of monopatch particles leads to the formation of dynamic and reconfigurable structures such as spinners and "cooperative swimmers" depending on the particle's aspect ratios. A particle with two patches of different sizes allows for "directional bonding", a concept popular in static assemblies but rare in dynamic ones. With the capability to make tunable and complex shapes, we anticipate the discovery of a diverse range of new dynamics and structures when other external stimuli (e.g., magnetic, optical, chemical, etc.) are employed and spark synergy with shapes.
机译:控制活性胶体的复杂动力学-胶体颗粒的自主运动及其自发组装-具有挑战性,但对于创建功能性,不平衡的胶体系统至关重要,该系统可能对纳米和微机械有用。本文中,通过介绍各种低对称形状的活性“斑驳”胶体的合成,我们证明了此类系统的动力学特性可以精确调整。低对称的斑状胶体通过簇包囊-去湿法批量制备。它们携带以形状(粒子几何形状,数量,大小和表面斑块的配置等)编码的基本信息,这些信息可对其机车和组装行为进行编程。在交流电场下,我们表明,通过具有两个不同弯曲角度的不对称贴片,可以调节粒子推进的速度以及制动和转向的能力。单补丁颗粒的组装导致动态和可重构结构的形成,例如旋转器和“合作游泳者”,具体取决于颗粒的长宽比。具有两个大小不同的面片的粒子可以进行“方向键合”,这种概念在静态装配中很流行,而在动态装配中却很少。由于具有制造可变形状和复杂形状的能力,我们预计当采用其他外部刺激(例如,磁,光,化学等)并与形状产生火花协同作用时,会发现各种各样的新动力学和结构。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号