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Nanostructural characterization of ordered gold particle arrays fabricated via aluminum anodizing, sputter coating, and dewetting

机译:通过铝阳极氧化,溅射镀膜和去湿制备的有序金颗粒阵列的纳米结构表征

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Gold nanoparticles were fabricated on an ordered aluminum dimple array via aluminum anodizing, sputter coating, and thermal treatment, and the transformation behavior and nanostructural characterization were investigated in detail. Electropolished aluminum specimens were anodized in an oxalic acid solution under self-ordering conditions at 40 V, and then the porous alumina was selectively dissolved to expose an ordered aluminum dimple array with each dimple measuring 100 nm. A thin layer of gold was coated onto the dimple array, and a thermal treatment was subsequently performed. The gold layer was transformed into numerous particles by the thermal treatment due to dewetting. When the values of gold layer thickness, thermal treatment temperature, and thermal treatment duration were optimized, the gold particles were located at the bottom of each aluminum dimple. Consequently, multiply-twinned particles with polygonal and elliptical shapes were regularly distributed on the aluminum dimple array treated at 473 K. Although the rate of the transformation induced by dewetting increased with the temperature of the thermal treatment, non-uniform gold nanostructures were formed by extended thermal treatment at 873 K. The gold particles formed on the aluminum surface exhibited excellent adhesion upon ultrasonication.
机译:通过铝阳极氧化,溅射镀膜和热处理将金纳米颗粒制备在有序的铝酒窝阵列上,并详细研究了其转变行为和纳米结构表征。将电抛光的铝样品在草酸溶液中于40 V的自排序条件下进行阳极氧化,然后选择性地溶解多孔氧化铝,以露出有序的铝凹坑阵列,每个凹坑的尺寸为100 nm。将金的薄层涂覆到凹坑阵列上,然后进行热处理。由于去湿,通过热处理金层转变成许多颗粒。当优化金层厚度,热处理温度和热处理持续时间的值时,金颗粒位于每个铝凹窝的底部。因此,在473 K处理的铝酒窝阵列上,规则地缠绕了多角形和椭圆形的多重孪晶颗粒。尽管通过去湿引起的相变速率随热处理温度的升高而增加,但金相结构却形成了不均匀的金纳米结构。扩展了在873 K下的热处理。铝表面上形成的金颗粒在超声处理后表现出出色的附着力。

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