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TiO纳米层压板的结构、光学和力学性能。

Structural, optical, and mechanical properties of TiO nanolaminates.

作者信息

Ghazaryan Lilit, Handa Shiti, Schmitt Paul, Beladiya Vivek, Roddatis Vladimir, Tünnermann Andreas, Szeghalmi Adriana

机构信息

Institute of Applied Physics, Abbe Center of Photonics, Friedrich Schiller University Jena, Germany.

Fraunhofer Institute for Applied Optics and Precision Engineering IOF, Jena, Germany.

出版信息

Nanotechnology. 2021 Feb 26;32(9):095709. doi: 10.1088/1361-6528/abcbc1.

Abstract

The structural, optical, and mechanical properties of TiO nanolaminate films grown by plasma-enhanced atomic layer deposition are discussed. Several TiO/AlO and TiO/SiO compositions have been investigated to study the effect of the relative number of ALD oxide cycles on the film properties to obtain a high refractive index coating with low optical losses, low roughness, and low mechanical stress. The formation of crystalline TiO observed at high deposition temperature, or film thickness was inhibited by periodically introducing ultra-thin amorphous layers into the film. Only 4 ALD cycles of AlO (corresponding to ca. 0.5 nm) between 335 ALD cycles of TiO (ca. 11 nm) form a closed, distinct layer suppressing the crystallization in TiO film. Consequently, the roughness of the pure TiO film is reduced from ca. 20 nm rms to 1 nm rms in the 335/4 nanolaminate, with only a slight decrease of the refractive index from 2.46 to 2.44 in 100 nm pure TiO and the nanolaminate, respectively. The refractive indices of the nanolaminates in various compositions vary between 2.38 and 2.50 at 632 nm, and the corresponding optical losses from the films are low. The mechanical stress was reduced to about 140 MPa in several TiO/AlO nanolaminates; however, lower mechanical stress has not been obtained with the studied compositions. The nanolaminate structure is preserved up to 600 °C annealing temperature. After annealing at 800 °C, the individual layers interdiffuse into each other so that no distinct nanolaminate structure is detected. By using TiO/AlO nanolaminates with reduced mechanical stress, a narrow bandpass filter was realized on various substrates, including half-ball and aspherical lenses.

摘要

讨论了通过等离子体增强原子层沉积生长的TiO纳米层状薄膜的结构、光学和机械性能。研究了几种TiO/AlO和TiO/SiO组成,以研究ALD氧化物循环的相对数量对薄膜性能的影响,从而获得具有低光学损耗、低粗糙度和低机械应力的高折射率涂层。通过定期在薄膜中引入超薄非晶层,抑制了在高沉积温度或薄膜厚度下观察到的结晶TiO的形成。在TiO的335个ALD循环(约11 nm)之间仅4个ALD循环的AlO(对应于约0.5 nm)形成一个封闭、明显的层,抑制TiO薄膜中的结晶。因此,纯TiO薄膜的粗糙度从约20 nm均方根降低到335/4纳米层状结构中的1 nm均方根,在100 nm纯TiO和纳米层状结构中,折射率仅从2.46略微降低到2.44。各种组成的纳米层状结构在632 nm处的折射率在2.38和2.50之间变化,并且薄膜的相应光学损耗较低。几种TiO/AlO纳米层状结构的机械应力降低到约140 MPa;然而,在所研究的组成中尚未获得更低的机械应力。纳米层状结构在高达600°C的退火温度下得以保留。在800°C退火后,各层相互扩散,以至于未检测到明显的纳米层状结构。通过使用具有降低机械应力的TiO/AlO纳米层状结构,在包括半球形和非球面透镜在内的各种衬底上实现了窄带通滤波器。

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