Institute of Nanophotonics, Jinan University, Guangzhou, 511443, China.
College of Chemistry and Materials Science, Jinan University, Guangzhou, 510632, China.
Adv Mater. 2022 Sep;34(38):e2205563. doi: 10.1002/adma.202205563. Epub 2022 Aug 21.
Due to the intrinsic lack of spatial order and self-supported shape, liquids are often incompatible with precision manufacturing/processing and are potentially limited for advanced functionality. Herein, an optothermal strategy is developed to fully command phase-separated liquids with unprecedented spatiotemporal addressability. Specifically, a laser is focused onto an Au film to create a hot spot that locally demixes a temperature-responsive solution to produce a single optothermal droplet. Spatial precision is assured by the well-defined thermal field and temporal accuracy guaranteed by the fast heating and response rate. Time-multiplexed laser foci are deployed to engineer the thermal landscape as desired, which in turn dictates the formation/dissolution, positioning, shaping, and dynamic reconfiguration of the phase-separated liquids. Further, laser foci are programmed to orchestrate the liquid patterns in a time-continuous manner to produce liquid animations on the microscale with high fidelity. While focused lasers are routinely used to manipulate solid particles or to microfabricate solid materials, the current strategy embraces the merits of liquids and features functional complexity in information encryption, payload transportation, and reaction localization. The strategy is further applicable in scenarios such as subcellular organization of biomolecular condensates and programmable modulation of non-equilibrium systems.
由于液体本身缺乏空间有序性和自支撑形状,因此通常与精密制造/加工不兼容,并且在先进功能方面可能受到限制。在此,开发了一种光热策略来完全控制具有前所未有的时空可寻址性的相分离液体。具体而言,将激光聚焦到金膜上以创建一个热点,该热点可局部使响应温度的溶液分相以产生单个光热液滴。通过明确的热场确保空间精度,并通过快速加热和响应速度保证时间精度。分时复用激光焦点被部署以按照需要设计热图,这反过来又决定了相分离液体的形成/溶解、定位、成型和动态重构。此外,激光焦点被编程以连续的时间方式协调液体图案,以在微尺度上产生具有高保真度的液体动画。虽然聚焦激光通常用于操纵固体颗粒或微加工固体材料,但当前策略利用了液体的优点,并具有信息加密、有效载荷运输和反应定位方面的功能复杂性。该策略还可适用于生物分子凝聚物的亚细胞组织和非平衡系统的可编程调制等场景。