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首页> 外文期刊>Journal of the European Ceramic Society >Metallization of ceramic substrates by laser induced decomposition of coordination complexes
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Metallization of ceramic substrates by laser induced decomposition of coordination complexes

机译:激光诱导的配位化合物分解使陶瓷基底金属化

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This work describes an in-situ Nd:YAG laser-assisted coating method to modify industrial glazed ceramic surfaces. The method makes use of a Cu polymer coordination complex, transformed via 1064 nm continuos wave (cw) laser irradiation, into a lustre-type glassy coating covering the ceramic substrate. The obtained coatings, with typical thicknesses ranging between 4 and 14 mu m, become integrated onto the ceramic glaze via a sharp interface, as found by SEM observation. Diffuse Reflectance UV-vis spectroscopy shows that the lustre effect arises from surface plasmon resonant effects associated to the formation of nanometric size Cu particles dispersed throughout the glaze coating. This was confirmed by XPS analysis and other techniques showing that the laser decomposition treatment induces the redox transformation of the Cu (II) complexes, present in the original precursor, into reduced Cu (0) nanoparticles. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项工作描述了原位Nd:YAG激光辅助涂覆方法来修饰工业釉面陶瓷表面。该方法利用通过1064 nm连续波(cw)激光照射转化为覆盖陶瓷基材的光泽型玻璃状涂层的Cu聚合物配位化合物。如通过SEM观察所发现的,所获得的通常具有在4至14μm范围内的厚度的涂层通过锐利的界面整合到陶瓷釉料上。漫反射紫外可见光谱表明,光泽效应是由表面等离子体共振效应引起的,该共振效应与分散在整个釉料涂层中的纳米尺寸Cu颗粒的形成有关。 XPS分析和其他技术证实了这一点,该技术表明,激光分解处理可将原始前体中存在的Cu(II)配合物氧化还原转化为还原的Cu(0)纳米粒子。 (C)2016 Elsevier Ltd.保留所有权利。

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