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Nanostructure and Mechanism of Metal Deposition by a Laser-Induced Photothermal Reaction

机译:激光诱导的光热反应纳米结构和金属沉积机理

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摘要

Laser-induced photothermal reaction of metal ions is a promising one-step method for production of conductive micropatterns for electronic devices and sensors. However, the mechanism that governs the process in which thermally activated materials are deposited on a substrate is not clear. Here, light is shed on the mechanism through systematic analysis of photothermal reaction products forming iron oxide and silver at different interfaces. Examination of the nanostructure of deposits on a substrate using high-resolution transmission electron microscopy and selected area diffraction pattern analysis reveals a combination of both amorphous and crystalline moieties. It is found that focusing the laser inside the solution leads to exclusive formation of crystalline products, while focusing at the liquid/air interface leads to formation of amorphous products due to kinetic considerations. Ring-shaped microstructures observed on the substrate indicate that microbubbles are involved in the deposition. The findings suggest that crystalline nanoparticles formed in solution are pinned to the base of the microbubbles. These stationary deposits absorb the laser light, resulting in extensive local heating, which leads to a fast thermal-reaction of the metal ions that are added as amorphous nanostructures. The presence of both crystalline and amorphous nanostructures therefore results from two different mechanisms.
机译:用于金属离子的激光诱导的光热反应是用于生产电子设备和传感器的导电微图案的有望的一步法。然而,控制在基板上沉积热活化材料的过程的机制尚不清楚。这里,通过在不同界面形成氧化铁和银的光热反应产物的系统分析来阐述光。使用高分辨率透射电子显微镜和选定的区域衍射图案分析检查底物上沉积物的纳米结构揭示了无定形和结晶部分的组合。发现将激光聚焦在溶液内部导致结晶产品的排他性形成,同时聚焦液体/空气接口导致由于动力学考虑而导致非晶态产品的形成。在基材上观察的环形微结构表明微泡涉及沉积。结果表明,在溶液中形成的结晶纳米颗粒固定到微泡的底部。这些固定沉积物吸收激光,导致广泛的局部加热,这导致金属离子的快速热反应,所述金属离子作为无定形纳米结构加入。因此,结晶和无定形纳米结构的存在因此由两种不同的机制产生。

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