首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Controlling the pulsed-laser-induced size reduction of Au and Ag nanoparticles via changes in the external pressure, laser intensity, and excitation wavelength
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Controlling the pulsed-laser-induced size reduction of Au and Ag nanoparticles via changes in the external pressure, laser intensity, and excitation wavelength

机译:通过外部压力,激光强度和激发波长的变化控制脉冲激光诱导的Au和Ag纳米粒子的尺寸减小

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摘要

The laser-induced size reduction of aqueous noble metal nanoparticles has been the subject of intensive research, because of the mechanistic interest in the light-nanoparticle interactions and its potential application to size control. The photothermal evaporation hypothesis has gained solid support. However, the polydispersity of the final products is considered as an inherent drawback of the method. It is likely that the polydispersity arises from the uncontrolled heat dissipation caused by vapor bubble formation in the ambient atmosphere. To overcome this problem, we applied high pressures of 30-100 MPa. The particle size was regulated by adjusting three parameters: the pressure, laser intensity, and excitation wavelength. For example, starting from a colloidal solution of 100 nm diameter gold nanoparticles, highly monodisperse (±3-5%) spheres with various diameters ranging from 90 to 30 nm were fabricated by tuning the laser intensity at 100 MPa, using an excitation wavelength of 532 nm. Further size reduction of the diameter to 20 nm was achieved by reducing the pressure and switching the excitation wavelength to 355 nm. It was found that the application of high pressures led to the heat loss-controlled size-reduction of the gold nanoparticles. More complicated results were obtained for 100 nm silver nanoparticles, possibly because of the different size-dependent light-absorbing nature of these particles. Based on our extensive experimental studies, a detailed picture was developed for the nanosecond laser-induced fabrication of gold and silver nanoparticles, leading to unprecedented size control.
机译:激光诱导的水性贵金属纳米粒子尺寸的减小已经成为深入研究的主题,因为对光-纳米粒子相互作用的机械兴趣及其在尺寸控制中的潜在应用。光热蒸发假说得到了坚实的支持。然而,最终产物的多分散性被认为是该方法的固有缺点。多分散性可能是由于在周围大气中形成蒸汽气泡而导致的不受控制的散热引起的。为了克服这个问题,我们施加了30-100 MPa的高压。通过调节三个参数来调节粒径:压力,激光强度和激发波长。例如,从直径为100 nm的金纳米颗粒的胶体溶液开始,通过使用100 nm的激发波长在100 MPa下调节激光强度,可以制造出直径范围为90至30 nm的高度单分散(±3-5%)的球。 532纳米。通过减小压力并将激发波长切换为355 nm,可以将直径进一步减小到20 nm。发现高压的施加导致金纳米颗粒的热损失控制的尺寸减小。对于100 nm的银纳米颗粒,获得了更为复杂的结果,这可能是由于这些颗粒的尺寸依赖性吸光特性不同所致。基于我们广泛的实验研究,为纳秒激光诱导的金和银纳米粒子的制备开发了详细的图片,从而实现了空前的尺寸控制。

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