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Transformation of irregular shaped silver nanostructures into nanoparticles by under water pulsed laser melting

机译:水脉冲激光熔融将不规则形状的银纳米结构转变为纳米颗粒

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The ability to easily manufacture nanostructures with a desirable attribute, such as well-defined size and shape, especially from any given initial shapes or sizes of the material, will be helpful towards accelerating the use of nanomaterials in various applications. In this work we report the transformation of discontinuous irregular nanostructures ( DIN) of silver metal by rapid heating under a bulk fluid layer. Ag films were changed into DIN by dewetting in air and subsequently heated by nanosecond laser pulses under water. Our findings show that the DIN first ripens into elongated structures and then breaks up into nanoparticles. From the dependence of this behavior on laser fluence we found that under water irradiation reduced the rate of ripening and also decreased the characteristic break-up length scale of the elongated structures. This latter result was qualitatively interpreted as arising from a Rayleigh-Plateau instability modified to yield significantly smaller length scales than the classical process due to pressure gradients arising from the rapid evaporation of water during laser melting. These results demonstrate that it is possible to fabricate a dense collection of monomodally sized Ag nanoparticles with significantly enhanced plasmonic quality starting from the irregular shaped materials. This can be beneficial towards transforming discontinuous Ag films into nanostructures with useful plasmonic properties, that are relevant for biosensing applications.
机译:容易地制造具有期望属性的纳米结构的能力,例如明确定义的尺寸和形状,尤其是从材料的任何给定初始形状或尺寸出发,将有助于加速纳米材料在各种应用中的使用。在这项工作中,我们报告了通过在体液层下快速加热而使银金属的不连续不规则纳米结构(DIN)转变的过程。通过在空气中去湿将Ag膜更改为DIN,然后在水下通过纳秒激光脉冲加热。我们的发现表明,DIN首先成熟为细长结构,然后分解为纳米颗粒。从这种行为对激光能量密度的依赖性,我们发现在水辐射下降低了成熟速率,并且还降低了细长结构的特征破裂长度尺度。后一结果被定性解释为由于激光熔化过程中水快速蒸发而产生的压力梯度,使得瑞利高原不稳定性被修改为比传统方法产生明显更小的长度尺度。这些结果表明,可以从不规则形状的材料开始制造密集集合的单峰尺寸的Ag纳米粒子,其等离子体质量得到显着提高。这对于将不连续的Ag膜转变为具有有用的等离子特性的纳米结构可能是有益的,这些等离子特性与生物传感应用有关。

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