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Additive Manufacturing of Gold Nanostructures Using Nonlinear Photoreduction under Controlled Ionic Diffusion

机译:控制离子扩散下使用非线性光电的金纳米结构的添加剂制造

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摘要

Multiphoton photoreduction of photosensitive metallic precursors via direct laser writing (DLW) is a promising technique for the synthesis of metallic structures onto solid substrates at the sub-micron scale. DLW triggered by a two photon absorption process is done using a femtosecond NIR laser (λ = 780 nm), tetrachloroauric acid (HAuCl4) as a gold precursor, and isinglass as a natural hydrogel matrix. The presence of a polymeric, transparent matrix avoids unwanted diffusive processes acting as a network for the metallic nanoparticles. After the writing process, a bath in deionized water removes the gold precursor ions and eliminates the polymer matrix. Different aspects underlying the growth of the gold nanostructures (AuNSs) are here investigated to achieve full control on the size and density of the AuNSs. Writing parameters (laser power, exposure time, and scanning speed) are optimized to control the patterns and the AuNSs size. The influence of a second bath containing Au3+ to further control the size and density of the AuNSs is also investigated, observing that these AuNSs are composed of individual gold nanoparticles (AuNPs) that grow individually. A fine-tuning of these parameters leads to an important improvement of the created structures’ quality, with a fine control on size and density of AuNSs.
机译:通过直接激光书写(DLW)的光敏金属前体的多光子光电是一种希望在亚微米级以固体基材合成金属结构的有希望的技术。由两个光子吸收过程触发的DLW使用Femtosecond Nir激光(λ= 780nm),四氯硼酸(HauCl4)作为金前体进行,并且作为天然水凝胶基质的isinglass。聚合物的透明基质的存在避免了用作金属纳米颗粒的网络的不需要的漫射过程。在写作过程之后,去离子水中的浴除去金前体离子并消除聚合物基质。这里的不同方面是金纳米结构(AUNSS)的生长,研究以实现对AUNS的尺寸和密度的完全控制。编写参数(激光功率,曝光时间和扫描速度)经过优化,以控制模式和肛门尺寸。还研究了含有Au3 +的第二浴的影响,进一步控制肛交α的尺寸和密度,观察到这些肛门组成的单独的金纳米颗粒(AUNP)组成。这些参数的微调导致所产生的结构的质量的重要改进,具有对AUNS的尺寸和密度的精细控制。

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