首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Photo-induced PM(2.5)adsorption in molecular ferroelectric heterostructures
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Photo-induced PM(2.5)adsorption in molecular ferroelectric heterostructures

机译:照片诱导的PM(2.5)分子铁电异质结构的吸附

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摘要

Ferroelectrics are polar materials with large spontaneous polarization. Particulate matter, PM2.5, may be polarized and adsorbed by ferroelectrics due to spontaneous polarization. Micron-sized rods of molecular ferroelectric material diisopropylammonium perchlorate (DIPAP) were synthesized by a freeze-drying method to adsorb PM2.5. After low temperature freeze-drying and subsequent high temperature heating, a stable heterojunction DIPAP structure formed with a ferroelectric phase and non-switching phase. The special ferroelectric heterostructure in the DIPAP micron rods gave it excellent photo-induced PM(2.5)adsorption. The photoelectric effect has an important role in the photo-induced adsorption. This work shows that molecular ferroelectric heterostructure materials have the potential to be used in creating dust-free spaces and simple outdoor particulate matter removal strategies.
机译:铁电器是具有大型自发极化的极性材料。 颗粒物质,PM2.5可以由由于自发极化而被铁电解的偏振并吸附。 通过冷冻干燥法合成分子铁电材料二异丙基铵(Dipap)的微米尺寸棒,用于吸附PM2.5。 在低温冷冻干燥和随后的高温加热后,形成具有铁电相和非切换阶段的稳定的异质结Dipap结构。 Dipap微米棒中的特殊铁电异质结构使其优异的光诱导的PM(2.5)吸附。 光电效应在光诱导的吸附中具有重要作用。 这项工作表明,分子铁电异质结构材料具有用于产生无尘空间和简单的户外颗粒物质去除策略。

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