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On the selective deposition of tin and tin oxide on various glasses using a high power diode laser

机译:利用高功率二极管激光器在各种玻璃上选择性沉积锡和氧化锡

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摘要

The deposition of SnO2 using a 120-W high power diode laser (HPDL) on both fused silica and soda-lime-silica glass has been successfully demonstrated. Deposition on both glass substrates was carried out with laser power densities of 650-1600 W cm-2 and at rates of 420-1550 mm min-1. The thickness of the deposited layers was typically approximately 250 μm. The maximum theoretical coverage rate that it may be possible to achieve using the HPDL was calculated as being 3.72 m2 h-1. Owing to the wettability characteristics of Sn, it proved impossible to deposit the metal on either glass substrate. Evidence of solidified microstructures was observed, with the microstructures differing considerably across the same deposited track. These differences were attributed to variations in the solidification rate, R, and the thermal gradient, G. Adhesion of the SnO2 with the soda-lime-silica glass was found to be due to mechanical bonding. The adhesion of the SnO2 with the fused silica was seen to be the result of a chemical bond arising from an interface region between the SnO2 and the fused silica glass substrate. This interface region was found to be comprised of mainly Si and rich with Sn3O4- © 2001 Elsevier Science B.V. All rights reserved.
机译:已经成功地证明了使用120 W高功率二极管激光器(HPDL)在熔融石英和钠钙硅玻璃上沉积SnO2的能力。在两个玻璃基板上以650-1600 W cm-2的激光功率密度和420-1550 mm min-1的速率进行沉积。沉积层的厚度通常约为250μm。使用HPDL可能达到的最大理论覆盖率经计算为3.72 m2 h-1。由于Sn的润湿性,事实证明不可能在任一玻璃基板上沉积金属。观察到凝固的微结构的证据,在相同的沉积轨迹上,微结构差异很大。这些差异归因于凝固速率R和热梯度G的变化。发现SnO2与钠钙硅玻璃的粘附是由于机械键合。可以看出,SnO2与熔融石英的粘附是化学键的结果,该化学键源自SnO2与熔融石英玻璃基板之间的界面区域。发现该界面区域主要由Si组成,并富含Sn3O4-©2001 Elsevier Science B.V.保留所有权利。

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