Mu Yijiang, Lei Lijie, Zheng Jing, Duan Wendi, Wang Zhisheng, Tang Jinyao, Gao Yongxiang, Wang Yufeng
Department of Chemistry, The University of Hong Kong, Pokfulam Road, Hong Kong 999077, China.
Institute for Advanced Study, Shenzhen University, Nanhai Avenue 3688, Shenzhen 518060, China.
ACS Nano. 2022 Apr 26;16(4):6801-6812. doi: 10.1021/acsnano.2c01688. Epub 2022 Apr 6.
Classic binary materials, ranging from polymer blends to table salts, contain equilibrium phases or crystals of two interacting components. Here, we report on the construction of binary colloidal materials out of equilibrium by employing active particles and passive particles that dynamically interact and organize. Key to our scheme is the introduction of photoactive microspheres whose activity can be precisely tuned. This allows us to leverage the complex nonequilibrium interplay between the constituent components for dynamic coassembly. A wide variety of binary structures have thus been realized, including the liquid-crystal phases and crystal-crystal phases phase separation and, counterintuitively, the binary crystalline compounds. The obtained structures are validated by computer simulations, which reveal unexpected kinetic pathways that are unique for active systems. With these findings, our strategy could facilitate the design and fabrication of multicomponent materials beyond equilibrium.
经典的二元材料,从聚合物共混物到食盐,都包含两个相互作用组分的平衡相或晶体。在此,我们报告通过使用动态相互作用和组织的活性粒子和惰性粒子构建非平衡二元胶体材料。我们方案的关键是引入活性可精确调节的光活性微球。这使我们能够利用组成成分之间复杂的非平衡相互作用进行动态共组装。由此实现了各种各样的二元结构,包括液晶相和晶 - 晶相、相分离,以及与直觉相反的二元晶体化合物。所获得的结构通过计算机模拟得到验证,模拟揭示了活性系统特有的意外动力学途径。基于这些发现,我们的策略可以促进非平衡多组分材料的设计和制造。