原子层沉积
材料科学
纳米技术
纳米结构
纳米晶
成核
纳米线
化学工程
异质结
化学浴沉积
图层(电子)
基质(水族馆)
薄膜
光电子学
化学
工程类
地质学
有机化学
海洋学
作者
Il‐Kwon Oh,Woo‐Hee Kim,Li Zeng,Joseph A. Singh,Dowon Bae,Adriaan J. M. Mackus,Jeong-Gyu Song,Seunggi Seo,Bonggeun Shong,Hyungjun Kim,Stacey F. Bent
出处
期刊:ACS Nano
[American Chemical Society]
日期:2020-01-22
卷期号:14 (2): 1757-1769
被引量:36
标识
DOI:10.1021/acsnano.9b07467
摘要
We introduce the synthesis of hybrid nanostructures comprised of ZnO nanocrystals (NCs) decorating nanosheets and nanowires (NWs) of MoS2 prepared by atomic layer deposition (ALD). The concentration, size, and surface-to-volume ratio of the ZnO NCs can be systematically engineered by controlling both the number of ZnO ALD cycles and the properties of the MoS2 substrates, which are prepared by sulfurizing ALD MoO3. Analysis of the chemical composition combined with electron microscopy and synchrotron X-ray techniques as a function of the number of ZnO ALD cycles, together with the results of quantum chemical calculations, help elucidate the ZnO growth mechanism and its dependence on the properties of the MoS2 substrate. The defect density and grain size of MoS2 nanosheets are controlled by the sulfurization temperature of ALD MoO3, and the ZnO NCs in turn nucleate selectively at defect sites on MoS2 surface and enlarge with increasing ALD cycle numbers. At higher ALD cycle numbers, the coalescence of ZnO NCs contributes to an increase in areal coverage and NC size. Additionally, the geometry of the hybrid structures can be tuned by changing the dimensionality of the MoS2, by employing vertical NWs of MoS2 as the substrate for ALD ZnO NCs, which leads to improvement of the relevant surface-to-volume ratio. Such materials are expected to find use in newly expanded applications, especially those such as sensors or photodevices based on a p-n heterojunction which relies on coupling transition-metal dichalcogenides with NCs.
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