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在25℃至500℃的衬底温度范围内观察到的射频溅射硫化镉薄膜物理性质的变化。

Variations in the Physical Properties of RF-Sputtered CdS Thin Films Observed at Substrate Temperatures Ranging from 25 °C to 500 °C.

作者信息

Lee Sangwoon, Kim Juna, Lee Seokhee, Cha Hyun-Jin, Son Chang-Sik, Son Young-Guk, Hwang Donghyun

机构信息

School of Materials Science and Engineering, Pusan National University, Busan 46241, Korea.

Division of Materials Science and Engineering, Silla University, Busan 46958, Korea.

出版信息

Nanomaterials (Basel). 2022 May 10;12(10):1618. doi: 10.3390/nano12101618.

Abstract

CdS films with a wide range of substrate temperatures as deposition parameters were fabricated on Corning Eagle 2000 glass substrates using RF magnetron sputtering. The crystallographic structure, microscopic surface texture, and stoichiometric and optical properties of each CdS film deposited at various substrate temperatures were observed to be highly temperature-dependent. The grown CdS thin films revealed a polycrystalline structure in which a cubic phase was mixed based on a hexagonal wurtzite phase. The relative intensity of the H(002)/C(111) peak, which represents the direction of the preferential growth plane, enhanced as the temperatures climbed from 25 °C to 350 °C. On the contrary, the intensity of the main growth peak at the higher temperatures of 450 °C and 500 °C was significantly reduced and exhibited amorphous-like behavior. The sharp absorption edge revealed in the transmission spectrum shifted from the long wavelength to the short wavelength region with the rise in the substrate temperature. The bandgap showed a tendency to widen from 2.38 eV to 2.97 eV when the temperatures increased from 25 °C to 350 °C. The CdS films grown at the temperatures of 450 °C and 500 °C exhibited glass-like transmittance with almost no interference fringes of light, which resulted in wide bandgap values of 3.09 eV and 4.19 eV, respectively.

摘要

采用射频磁控溅射法,在康宁Eagle 2000玻璃基板上制备了一系列以衬底温度为沉积参数的硫化镉(CdS)薄膜。观察发现,在不同衬底温度下沉积的各CdS薄膜的晶体结构、微观表面纹理、化学计量比和光学性质都高度依赖于温度。生长的CdS薄膜呈现出多晶结构,其中基于六方纤锌矿相混合了立方相。代表择优生长面方向的H(002)/C(111)峰的相对强度,随着温度从25℃攀升至350℃而增强。相反,在450℃和500℃较高温度下的主要生长峰强度显著降低,并表现出类似非晶的行为。透射光谱中显示的尖锐吸收边随着衬底温度的升高从长波长区域移至短波长区域。当温度从25℃升高到350℃时,带隙呈现出从2.38 eV拓宽到2.97 eV的趋势。在450℃和500℃温度下生长的CdS薄膜表现出类似玻璃的透过率,几乎没有光的干涉条纹,其带隙值分别为3.09 eV和4.19 eV。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfa5/9148045/48df36616a54/nanomaterials-12-01618-g001.jpg

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