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High quality single atomic layer deposition of hexagonal boron nitride on single crystalline Rh(111) four-inch wafers

机译:六方氮化硼在单晶Rh(111)四英寸晶片上的高质量单原子层沉积

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摘要

The setup of an apparatus for chemical vapor deposition (CVD) of hexagonal boron nitride (h-BN) and its characterization on four-inch wafers in ultra high vacuum (UHV) environment is reported. It provides well-controlled preparation conditions, such as oxygen and argon plasma assisted cleaning and high temperature annealing. In situ characterization of a wafer is accomplished with target current spectroscopy. A piezo motor driven x-y stage allows measurements with a step size of 1 nm on the complete wafer. To benchmark the system performance, we investigated the growth of single layer h-BN on epitaxial Rh(111) thin films. A thorough analysis of the wafer was performed after cutting in atmosphere by low energy electron diffraction, scanning tunneling microscopy, and ultraviolet and X-ray photoelectron spectroscopies. The apparatus is located in a clean room environment and delivers high quality single layers of h-BN and thus grants access to large area UHV processed surfaces, which had been hitherto restricted to expensive, small area single crystal substrates. The facility is versatile enough for customization to other UHV-CVD processes, e.g., graphene on four-inch wafers.
机译:报道了六方氮化硼(h-BN)的化学气相沉积(CVD)设备的设置及其在超高真空(UHV)环境下在四英寸晶圆上的表征。它提供了可控的制备条件,例如氧气和氩气等离子体辅助的清洁以及高温退火。晶圆的原位表征是通过目标电流光谱学完成的。压电电机驱动的x-y平台允许在整个晶片上以1 nm的步长进行测量。为了对系统性能进行基准测试,我们研究了外延Rh(111)薄膜上单层h-BN的生长。在大气中切割后,通过低能电子衍射,扫描隧道显微镜以及紫外和X射线光电子能谱对晶圆进行了彻底的分析。该设备位于洁净室环境中,可提供高品质的h-BN单层,因此可以进入大面积的UHV处理过的表面,而该表面迄今仅限于昂贵的小面积单晶衬底。该设施具有足够的通用性,可以定制其他UHV-CVD工艺,例如,四英寸晶圆上的石墨烯。

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