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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >High-throughput synthesis of core-shell and multi-shelled materials by fluidised bed chemical vapour deposition. Case study: double-shell rutile-anatase particles
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High-throughput synthesis of core-shell and multi-shelled materials by fluidised bed chemical vapour deposition. Case study: double-shell rutile-anatase particles

机译:通过流化床化学气相沉积高通量合成核壳和多壳材料。案例研究:双壳金红石型锐钛矿酶颗粒

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摘要

Fluidised Bed Chemical Vapour Deposition (FBCVD) has been widely used for the industrial production of corrosion resistant and mechanically robust coatings. Laboratory-based FBCVD rigs are less common, however, this technique is ideal for the high-throughput production of core-shell and multi-shelled materials, allowing large areas to be coated in a fast and cost effective way. The method is also convenient for the optimisation of advanced materials with tuned structural, electronic and functional properties. In this work, the synthesis of double-shelled rutile-anatase TiO2 particles is presented as a case study. Electron transfer mechanisms at the junction level of the two polymorphs have been reported as responsible for the high efficiency of TiO2-based materials, such as the well-known Evonik P25 standard. The photocatalytic performance of the double-shelled particles was evaluated during the mineralisation of a model organic pollutant (stearic acid) and compared with that of the individual components. To the best of our knowledge, this is the first time that multi-shelled particles have been synthesised from a chemical vapour deposition route.
机译:流化床化学气相沉积(FBCVD)已被广泛用于工业生产耐腐蚀和机械坚固的涂料。基于实验室的FBCVD钻机较少见,但是,该技术是高产量生产核壳和多壳材料的理想选择,允许以快速且经济高效的方式对大面积进行涂覆。该方法还便于优化具有调整的结构,电子和功能特性的高级材料。在这项工作中,作为案例研究提出了双壳金红石型锐钛矿型TiO2颗粒的合成。据报道,在两种多晶型物的结合水平上的电子转移机制是造成TiO2基材料高效化的原因,例如众所周知的Evonik P25标准。在模型有机污染物(硬脂酸)矿化过程中评估了双壳颗粒的光催化性能,并将其与各个组分的光催化性能进行了比较。据我们所知,这是第一次通过化学气相沉积途径合成多壳颗粒。

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