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Direct synthesis of platinum nanodots in ZIF-8/Fe3O4 core–shell hybrid nanoparticles

机译:ZIF-8 / Fe 3 O 4 核-壳杂化纳米粒子中铂纳米点的直接合成

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摘要

A novel method was developed for synthesizing platinum nanodots inside zeolitic imidazolate framework nanostructures without using additional reducing agents. Fe3O4 magnetic nanoparticle clusters (MNCs) were synthesized and coated with ZIF-8 (ZIF) shells via a hydrothermal reaction. Upon addition of ZIF/MNC hybrid nanoparticles into a platinum precursor (K2PtCl4) solution, platinum ions were reduced to metallic platinum nanodots by the 2-methyl imidazolate groups. The resulting platinum nanodots were ~2 nm in diameter and uniformly distributed in the pores of the ZIF layer. The catalytic activity of the platinum nanodots was examined by using Pt/ZIF/MNCs for the reduction of 4-nitrophenol. The resulting high catalytic activity was attributed to the high surface area of the platinum nanodots and the absence of capping layers. Furthermore, the hybrid nanoparticles were recovered using a permanent magnet and were found to maintain their catalytic activity after multiple cycles.
机译:开发了一种新颖的方法,可在不使用其他还原剂的情况下在沸石咪唑酸盐骨架纳米结构内合成铂纳米点。合成了Fe 3 O 4 磁性纳米粒子簇(MNC),并用ZIF-8(ZIF)壳包覆通过水热反应。将ZIF / MNC杂化纳米颗粒添加到铂前体溶液(K 2 PtCl 4 )溶液中后,铂离子被2-甲基咪唑酸酯基团还原成金属铂纳米点。生成的铂纳米点直径约为2 nm,并均匀分布在ZIF层的孔中。铂纳米点的催化活性通过使用Pt / ZIF / MNCs进行了4-硝基苯酚还原反应的研究。所得到的高催化活性归因于铂纳米点的高表面积和不存在覆盖层。此外,使用永磁体回收了杂化纳米颗粒,并且发现其在多个循环后仍保持其催化活性。

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