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Optical Force-Induced Chemistry at Solution Surfaces
Annual Review of Physical Chemistry ( IF 14.7 ) Pub Date : 2021-04-20 , DOI: 10.1146/annurev-physchem-090419-044828
Hiroshi Masuhara, Ken-ichi Yuyama

When an intense 1,064-nm continuous-wave laser is tightly focused at solution surfaces, it exerts an optical force on molecules, polymers, and nanoparticles (NPs). Initially, molecules and NPs are gathered into a single assembly inside the focus, and the laser is scattered and propagated through the assembly. The expanded laser further traps them at the edge of the assembly, producing a single assembly much larger than the focus along the surface. Amino acids and inorganic ionic compounds undergo crystallization and crystal growth, polystyrene NPs form periodic arrays and disklike structures with concentric circles or hexagonal packing, and Au NPs demonstrate assembling and swarming, in which the NPs fluctuate like a group of bees. These phenomena that depend on laser polarization are called optically evolved assembling at solution surfaces, and their dynamics and mechanisms are elucidated in this review. As a promising application in materials science, the optical trapping assembly of lead halide perovskites, supramolecules, and aggregation-induced emission enhancement–active molecules is demonstrated and future directions for fundamental study are discussed.

中文翻译:


溶液表面的光力诱导化学

当强烈的 1,064 nm 连续波激光紧密聚焦在溶液表面时,它会对分子、聚合物和纳米粒子 (NP) 施加光学力。最初,分子和纳米颗粒聚集在焦点内的单个组件中,激光在组件中散射和传播。扩展的激光进一步将它们捕获在组件的边缘,从而产生比沿表面的焦点大得多的单个组件。氨基酸和无机离子化合物经历结晶和晶体生长,聚苯乙烯纳米颗粒形成周期性阵列和具有同心圆或六边形堆积的盘状结构,金纳米颗粒表现出组装和蜂拥,其中纳米颗粒像一群蜜蜂一样波动。这些依赖于激光偏振的现象被称为在溶液表面的光学演化组装,本综述阐明了它们的动力学和机制。作为材料科学中的一个有前景的应用,卤化铅钙钛矿、超分子和聚集诱导发射增强活性分子的光学俘获组件得到了证明,并讨论了基础研究的未来方向。

更新日期:2021-04-21
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