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Deposition of metal particles onto semiconductor nanorods using an ionic liquid

机译:使用离子液体将金属颗粒沉积到半导体纳米棒上

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摘要

The current study investigates whether metal deposition onto an existing nanorod can be carried out using an ionic liquid, and the effect this has on catalytic performance. Platinum, gold, and silver nanoparticles were deposited onto CdSe@CdS (core@shell) nanorods from metal salts in an ionic liquid (1-butyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide) without additional surfactants or reducing agents. Photocatalytic dye degradation experiments showed that catalysts with platinum particles deposited using the ionic liquid out-performed similar materials synthesized using organic solvents and ligands. We concluded that metal particles can be deposited onto well-defined semiconductor nanorods using ionic liquids and metal salts without the need for additional reagents, and the deposited particles did not cause significant aggregation even when these materials were taken into organic media. It is possible that a broad range of metal/semiconductor heterostructured particles can be prepared using the methods reported here.
机译:当前的研究调查了是否可以使用离子液体将金属沉积到现有的纳米棒上,以及这对催化性能的影响。在没有其他表面活性剂或还原剂的情况下,将铂,金和银纳米粒子从金属盐中的金属盐沉积在CdSe @ CdS(核壳)纳米棒上(1-丁基-3-甲基咪唑鎓双(三氟甲基磺酰基)酰亚胺)。光催化染料降解实验表明,使用离子液体沉积的铂颗粒催化剂的性能优于使用有机溶剂和配体合成的相似材料。我们得出的结论是,可以使用离子液体和金属盐将金属颗粒沉积到轮廓分明的半导体纳米棒上,而无需其他试剂,并且即使将这些材料放入有机介质中,沉积的颗粒也不会引起明显的聚集。使用本文报道的方法可以制备各种各样的金属/半导体异质结构颗粒。

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