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Vacuum vapour deposition of phenylphosphonic acid on amorphous alumina

机译:在非晶态氧化铝上真空气相沉积苯基膦酸

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A study of the growth of phenylphosphonic acid (PPOA) on amorphous alumina thin films on top of polycrystalline aluminium foil is presented. The self-assembled monolayer (SAM) of the acid was grown in ultra high vacuum via vapour phase deposition, which allows us to investigate the molecular growth process in situ by photoelectron spectroscopy. The acid adlayer was deposited on the alumina surface at 300 K from an evaporator consisting of a ceramic tube heated by a tungsten wire. On adsorption of the PPOA acid on the alumina surface the anchoring properties of the phosphonic group lead to the formation of an ordered layer with an outward phenyl ring group and a phosphonate interface. The C 1s, P 2s, P 2p, Al 2p and O 1s core level spectra were analysed as a function of the deposition time. The acid adsorption occurs in two ranges: formation of an initial monolayer phase, followed by saturation coverage where the P 2s peak intensity is constant with deposition time. It was confirmed that the phenylphosphonic acid molecules react with the alumina surface forming P-O-Al bonds. It was shown that the SAM formation is driven by the evolution of acid molecular coverage on the alumina surface. The results on the vapour deposited PPOA SAM monolayer on the amorphous alumina surface are consistent with previous findings for a number of phosphonic acids SAMs prepared through immersion of the alumina surfaces in an acid solution.
机译:提出了在多晶铝箔顶部的无定形氧化铝薄膜上苯膦酸(PPOA)生长的研究。酸的自组装单层(SAM)通过气相沉积在超高真空中生长,这使我们能够通过光电子能谱研究原位分子生长过程。通过蒸发器将酸添加剂以300 K的温度沉积在氧化铝表面上,该蒸发器由用钨丝加热的陶瓷管组成。当PPOA酸吸附在氧化铝表面上时,膦酸基团的锚定性质导致形成具有向外苯环基团和膦酸酯界面的有序层。分析了C 1s,P 2s,P 2p,Al 2p和O 1s核心能级谱与沉积时间的关系。酸吸附发生在两个范围内:形成初始单层相,然后进行饱和覆盖,其中P 2s峰强度随沉积时间恒定。证实了苯基膦酸分子与氧化铝表面反应形成P-O-Al键。结果表明,SAM的形成是由氧化铝表面酸性分子覆盖率的演变驱动的。在无定形氧化铝表面上气相沉积的PPOA SAM单层上的结果与通过将氧化铝表面浸入酸溶液中制备的许多膦酸SAM的先前发现是一致的。

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