He Yongqing, Liu Jian, Yang Xukai, Yang Jianzhi, Jiao Feng
Department of Energy and Environment, Southeast University, Nanjing, 211189, China.
School of Chemical Engineering, Kunming University of Science and Technology, Kunming, 650500, China.
Mater Today Bio. 2025 Jul 8;33:102072. doi: 10.1016/j.mtbio.2025.102072. eCollection 2025 Aug.
Evaporation-driven self-assembly of colloidal particles in a sessile drop can construct simple structures in various scenarios. However, the non-equilibrium self-assembly process, dominated by internal capillary flow and solute- or thermal-induced Marangoni flow, cannot guarantee the precise positioning of the particles. One can exert forces on individual suspended particles by introducing external field manipulation, which enables the construction of precise deposits and even 3D structures. Here, we review recent advances in field-directed assembly techniques, including acoustics, optics, electronics, and magnetics, where micro- and nano-particles are directly guided into targeted positions to form functional structures. These techniques are fundamental in analytical chemistry for their ability to achieve precise particle positioning, which is essential for developing sensitive and specific analytical methods. We first discussed the forces generated by these external fields and then summarized the directed assembly of colloidal particles, including its benefits and disadvantages for analytical chemistry applications. Furthermore, we examine the challenges and potential solutions for controlling colloidal particles and explore future research directions to advance the field of analytical chemistry further.
在静态液滴中,胶体颗粒通过蒸发驱动的自组装能够在各种场景下构建简单结构。然而,由内部毛细管流动以及溶质或热诱导的马兰戈尼流动主导的非平衡自组装过程,无法保证颗粒的精确定位。通过引入外部场操控,可以对单个悬浮颗粒施加力,从而能够构建精确的沉积物甚至三维结构。在此,我们综述了场定向组装技术的最新进展,包括声学、光学、电子学和磁学领域,其中微米和纳米颗粒被直接引导至目标位置以形成功能结构。这些技术在分析化学中至关重要,因为它们能够实现精确的颗粒定位,这对于开发灵敏且特异的分析方法必不可少。我们首先讨论了这些外部场产生的力,然后总结了胶体颗粒的定向组装,包括其在分析化学应用中的优缺点。此外,我们研究了控制胶体颗粒的挑战和潜在解决方案,并探索未来的研究方向,以进一步推动分析化学领域的发展。