State Key Laboratory of Pollution Control and Resource Reuse, School of Environment, Nanjing University, 210023, Nanjing, China.
Institute of Soil Science, Chinese Academy of Sciences, 210008, Nanjing, China.
Nat Commun. 2022 Oct 17;13(1):6125. doi: 10.1038/s41467-022-33950-1.
Phthalate esters (PAEs) have been extensively used as additives in plastics and wallcovering, causing severe environmental contamination and increasing public health concerns. Here, we find that hematite nanoparticles with specific facet-control can efficiently catalyze PAEs hydrolysis under ambient humidity conditions, with the hydrolysis rates 2 orders of magnitude higher than that in water saturated condition. The catalytic performance of hematite shows a significant facet-dependence with the reactivity in the order {012} > {104} ≫ {001}, related to the atomic array of surface undercoordinated Fe. The {012} and {104} facets with the proper neighboring Fe-Fe distance of 0.34-0.39 nm can bidentately coordinate with PAEs, and thus induce much stronger Lewis-acid catalysis. Our study may inspire the development of nanomaterials with appropriate surface atomic arrays, improves our understanding for the natural transformation of PAEs under low humidity environment, and provides a promising approach to remediate/purify the ambient air contaminated by PAEs.
邻苯二甲酸酯(PAEs)被广泛用作塑料和壁布的添加剂,造成严重的环境污染,引起公众健康关注。在这里,我们发现具有特定面控制的赤铁矿纳米粒子可以在环境湿度条件下有效地催化 PAEs 的水解,水解速率比水饱和条件下高 2 个数量级。赤铁矿的催化性能表现出明显的面依赖性,反应活性顺序为{012}>{104}≫{001},与表面欠配位 Fe 的原子排列有关。{012}和{104}面具有适当的相邻 Fe-Fe 距离 0.34-0.39nm,可以双齿配位与 PAEs,从而诱导更强的路易斯酸催化。我们的研究可能会激发具有适当表面原子排列的纳米材料的发展,提高我们对低湿度环境下 PAEs 自然转化的理解,并为修复/净化受 PAEs 污染的环境空气提供了一种很有前途的方法。