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Light Induced Further Agglomeration of Metal Particles

机译:光诱导金属颗粒的进一步凝聚

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The observation of an unusual light-induced agglomeration phenomenon that occurs besides the trapping of the gold nanoparticles aggregates (GNAs) has been observed. The observed agglomerate has a 60-100 μm donut-shaped metal microstructure with the rate of formation dependent on the laser power used. In this paper, the forces involved and the mechanism of this further agglomeration phenomenon are analyzed in detail. The observed trapping can partially be explained by a model including the optical radiation force and radiometric force. However, the light-induced agglomeration cannot be explained by optical trapping alone as the size of the agglomerate is much greater than the waist of the Gaussion beam used in the optical trapping. Hydrodynamic drag force induced by the laser heating is also considered to play a role. Besides these forces, the mechanism of light-induced agglomeration is attributed to ion detachment from the surface of the nanoparticles/aggregates due to light illumination or heating. This is supported by the observation of reversible conductivity changes in the nanoparticle/aggregate solution upon laser illumination or direct heating. Light-induced agglomeration can be useful in the design and fabrication of microstructures from nanomaterials for various device applications.
机译:已经观察到除了捕获金纳米颗粒聚集体(GNAs)之外发生的异常光诱导的聚集现象。观察到的附聚物具有60-100μm的甜甜圈形状的金属微观结构,其依赖于所用的激光功率。在本文中,详细分析所涉及的力和这种进一步的聚集现象的机制。观察到的俘获可以通过包括光学辐射力和辐射力的模型来分配。然而,由于聚集的尺寸远大于光学捕获中使用的高斯梁的腰部,光学俘获不能单独解释光诱导的聚凝聚。激光加热引起的流体动力阻力也被认为是发挥作用。除了这些力之外,光学聚集的机理归因于由于光照射或加热而从纳米颗粒/聚集体的表面离子脱离。通过观察激光照射或直接加热在纳米粒子/聚集溶液中的可逆电导率变化的观察结果支持。光致凝聚可用于从用于各种装置应用的纳米材料的微观结构的设计和制造的设计和制造。

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