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三步式多层沉积锌杂化聚合物制备氧化锌超薄膜的孔隙率研究

Study on Porosity in Zinc Oxide Ultrathin Films from Three-Step MLD Zn-Hybrid Polymers.

作者信息

Berger Richard, Seiler Martin, Perrotta Alberto, Coclite Anna Maria

机构信息

Institute for Solid State Physics, Graz University of Technology, NAWI Graz, Petersgasse 16, 8010 Graz, Austria.

出版信息

Materials (Basel). 2021 Mar 15;14(6):1418. doi: 10.3390/ma14061418.

Abstract

Deriving mesoporous ZnO from calcinated, molecular layer deposited (MLD) metal-organic hybrid thin films offers various advantages, e.g., tunable crystallinity and porosity, as well as great film conformality and thickness control. However, such methods have barely been investigated. In this contribution, zinc-organic hybrid layers were for the first time formed via a three-step MLD sequence, using diethylzinc, ethanolamine, and maleic anhydride. These zinc-organic hybrid films were then calcinated with the aim of enhancing the porosity of the obtained ZnO films. The saturation curves for the three-step MLD process were measured, showing a growth rate of 4.4 ± 0.2 Å/cycle. After initial degradation, the zinc-organic layers were found to be stable in ambient air. The transformation behavior of the zinc-organic layers, i.e., the evolution of the film thickness and refractive index as well as the pore formation upon heating to 400, 500, and 600 °C were investigated with the help of spectroscopic ellipsometry and ellipsometric porosimetry. The calculated pore size distribution showed open porosity values of 25%, for the sample calcinated at 400 °C. The corresponding expectation value for the pore radius obtained from this distribution was 2.8 nm.

摘要

由煅烧的分子层沉积(MLD)金属有机混合薄膜制备介孔氧化锌具有多种优势,例如可调节的结晶度和孔隙率,以及良好的薄膜保形性和厚度控制。然而,此类方法鲜有研究。在本论文中,首次通过三步MLD序列,使用二乙基锌、乙醇胺和顺丁烯二酸酐形成了锌有机混合层。然后对这些锌有机混合薄膜进行煅烧,以提高所得氧化锌薄膜的孔隙率。测量了三步MLD过程的饱和曲线,显示生长速率为4.4±0.2 Å/循环。在初始降解后,发现锌有机层在环境空气中稳定。借助光谱椭偏仪和椭偏孔隙率测定法,研究了锌有机层的转变行为,即薄膜厚度和折射率的演变以及加热到400、500和600°C时的孔隙形成。计算得到的孔径分布表明,在400°C煅烧的样品的开孔孔隙率值为25%。从该分布获得的孔隙半径的相应期望值为2.8 nm。

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