Department of Applied Chemistry and Institute of Molecular Science, National Chiao Tung University , Hsinchu 30010, Taiwan.
Graduate School of Materials Science, Nara Institute of Science and Technology , Ikoma, Nara 630-0192, Japan.
Langmuir. 2016 Nov 29;32(47):12488-12496. doi: 10.1021/acs.langmuir.6b02433. Epub 2016 Sep 21.
Assembling dynamics of polystyrene nanoparticles by optical trapping is studied with utilizing transmission/reflection microscopy and reflection microspectroscopy. A single nanoparticle assembly with periodic structure is formed upon the focused laser irradiation at solution surface layer and continuously grows up to a steady state within few minutes. By controlling nanoparticle and salt concentrations in the colloidal solution, the assembling behavior is obviously changed. In the high concentration of nanoparticles, the assembly formation exhibits fast growth, gives large saturation size, and leads to dense packing structure. In the presence of salt, one assembly with the elongated aggregates was generated from the focal spot and 1064 nm trapping light was scattered outwardly with directions, while a small circular assembly and symmetrical expansion of the 1064 nm light were found without salt. The present nanoparticle assembling in optical trapping is driven through multiple scattering in gathered nanoparticles and directional scattering along the elongated aggregates derived from optical association of nanoparticles, which dynamic phenomenon is called optically evolved assembling. Repetitive trapping and release processes of nanoparticles between the assembly and the surrounding solution always proceed, and the steady state at the circular assembly formed by laser trapping is determined under optical and chemical equilibrium.
利用传输/反射显微镜和反射微光谱学研究了通过光阱组装聚苯乙烯纳米粒子的动力学。在溶液表面层的聚焦激光照射下形成具有周期性结构的单个纳米粒子组装体,并在几分钟内持续增长至稳定状态。通过控制胶体溶液中的纳米粒子和盐浓度,组装行为明显发生变化。在高浓度的纳米粒子中,组装形成表现出快速的生长,给出大的饱和尺寸,并导致密集的堆积结构。在存在盐的情况下,从焦点处产生了一个具有拉长聚集体的组装体,1064nm 捕获光向外散射,而在没有盐的情况下,发现了一个小的圆形组装体和 1064nm 光的对称扩展。目前,通过聚集的纳米粒子中的多重散射和沿纳米粒子光学缔合产生的拉长聚集体的定向散射来驱动光阱中的纳米粒子组装,这种动态现象称为光演化组装。纳米粒子在组装体和周围溶液之间的重复捕获和释放过程总是进行,并且由激光捕获形成的圆形组装体的稳定状态是在光学和化学平衡下确定的。