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Gas sensing properties of SuMBE growth hybrid nanostructured thin films

机译:SuMBE生长混合纳米结构薄膜的气敏特性

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Cluster supersonic beams have been previously shown to be a viable method to produce nanostructures by assembling them on a substrate in a controlled way. Control of precursors properties in the beam efficiently determine morphology, structure of films and their functional properties. Sensors based on cluster assembled TiO/sub 2/ show remarkable properties (sensitivity, response time and selectivity). We expand this approach to organic functionalization of nanostuctured oxides in a co-deposition scheme combining supersonic sources of organics (SuMBE) and of oxides (MPCS). Characterization of the properties of films and of the precursors will be discussed. This opens the perspective of using a co-deposition process combining metal (oxides) clusters and organic molecules to produce hybrid "decorated" nanostructures that could combine the inorganic stability and the molecular selectivity to produce a novel generation of gas sensors. The performance of the first prototype will also be presented.
机译:簇超声波束先前已被证明是一种可行的方法,可以通过将纳米束以受控方式组装在基板上来产生纳米结构。束中前体性质的控制有效地决定了膜的形态,膜的结构及其功能性质。基于簇组装的TiO / sub 2 /的传感器表现出卓越的性能(灵敏度,响应时间和选择性)。我们将有机物(SuMBE)和氧化物(MPCS)的超音速源相结合的共沉积方案中,将这种方法扩展为纳米结构氧化物的有机功能化。将讨论膜和前体的特性表征。这开辟了使用结合金属(氧化物)簇和有机分子的共沉积工艺来产生混合的“修饰”纳米结构的观点,该混合结构可以结合无机稳定性和分子选择性来产生新一代的气体传感器。还将展示第一个原型的性能。

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