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Rapid Vapor-Phase Fabrication of Organic-Inorganic Hybrid Superlattices with Monolayer Precision

机译:具有单层精度的有机-无机杂化超晶格的快速气相制备

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摘要

We report a new layer-by-layer growth method of self-assembled organic multilayer thin films based on gas-phase reactions. In the present molecular layer deposition (MLD) process, alkylsiloxane self-assembled multilayers (SAMs) were grown under vacuum by repeated sequential adsorptions of C= C-terminated alkylsilane and titanium hydroxide. The MLD method is a self- limiting layer-by-layer growth process, and is perfectly compatible with the atomic layer deposition (ALD) method. The SAMs films prepared exhibited good thermal and mechanical stability, and various unique electrical properties. The MLD method, combined with ALD, was applied to the preparation of organic-inorganic hybrid nanolaminate films in the ALD chamber. The organic-inorganic hybrid superlattices were then used as active mediums for two-terminal electrical bistable devices. The advantages of the MLD method with ALD include accurate control of film thickness, large-scale uniformity, highly conformal layering, sharp interfaces, and a vast library of possible materials. The MLD method with ALD is an ideal fabrication technique for various organic-inorganic hybrid superlattices.
机译:我们报告了一种新的基于气相反应的自组装有机多层薄膜的逐层生长方法。在本分子层沉积(MLD)工艺中,通过重复顺序吸附C = C端基的烷基硅烷和氢氧化钛,在真空下生长烷基硅氧烷自组装多层(SAMs)。 MLD方法是一种自我限制的逐层生长工艺,与原子层沉积(ALD)方法完全兼容。制备的SAMs膜表现出良好的热稳定性和机械稳定性,以及各种独特的电性能。将MLD方法与ALD相结合,用于在ALD室内制备有机-无机杂化纳米层压膜。然后将有机-无机杂化超晶格用作双末端双稳态电子稳定装置的活性介质。带有ALD的MLD方法的优点包括精确控制薄膜厚度,大规模均匀性,高度保形的分层,清晰的界面以及大量可能的材料。带有ALD的MLD方法是用于各种有机-无机混合超晶格的理想制造技术。

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