Developing Functionality in Perovskites from Abatement of Pollutants to Sustainable Energy Conversion and Storage

A. Bedon, A. Glisenti
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引用次数: 1

Abstract

Different functionalities can be developed and optimised in perovskites by means of different approaches: doping, nanocomposition and exsolution. In our research, these strategies are used with the aim of a sustainable development. Our objectives are in developing perovskite-based materials for catalysis and electrocatalysis. In particular, we successfully obtained catalysts for abatement of pollutants in three-way catalysts, catalysts for dry reforming of methane and electro-catalysts for solid oxide cells (solid oxide fuel cells and solid oxide electrolysers). In all cases, the corresponding device and experimental set-up was optimised. The catalysts and electro-catalysts we considered are free of noble metals and with minimum amount of critical raw materials. The preparation procedures are by wet chemistry, highly reproducible and up-scalable.
开发钙钛矿的功能,从减少污染物到可持续能源转换和储存
不同的功能可以通过不同的方法开发和优化钙钛矿:掺杂,纳米组成和溶出。在我们的研究中,这些策略是为了可持续发展而使用的。我们的目标是开发用于催化和电催化的钙钛矿基材料。特别是,我们成功地获得了用于减少三向催化剂中的污染物的催化剂、用于甲烷干重整的催化剂和用于固体氧化物电池(固体氧化物燃料电池和固体氧化物电解槽)的电催化剂。在所有情况下,相应的设备和实验设置进行了优化。我们考虑的催化剂和电催化剂不含贵金属,关键原料用量最少。制备过程是湿化学,高度可重复性和可扩展。
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