Kalyva Maria, Wragg David S, Fjellvåg Helmer, Sjåstad Anja O
Department of Chemistry, Centre for Materials Science and Nanotechnology University of Oslo Oslo 0315 Norway.
ChemistryOpen. 2017 Feb 28;6(2):273-281. doi: 10.1002/open.201600163. eCollection 2017 Apr.
Platinum (Pt) and platinum-rhodium (PtRh) nanoparticles (NPs) are active catalysts for a range of important industrial reactions, and their response has been shown to be affected by size, morphology, composition, and architectural configuration. We report herein the engineering of these functionalities into NPs by suitably modifying our single-step fabrication process by using microwave irradiation dielectric heating. NPs with different morphologies are acquired by manipulating the reaction kinetics with the concentration of the capping agent while keeping the reaction time constant. Pt@Rh core@shell octopod-cube, Pt-truncated-cube, and cube and small-sphere NPs having "near-monodisperse" distributions and average sizes in the range of 4 to 18 nm are obtained. By increasing the microwave time the composition of Pt@Rh can be tuned, and NPs with a Rh-rich shell and a tunable Pt Rh (≤41 at %) core are fabricated. Finally, alloy bimetallic PtRh NPs with controlled composition are designed by simultaneous tuning of the relative molar ratio of the metal precursors and the microwave irradiation time.
铂(Pt)和铂铑(PtRh)纳米颗粒(NPs)是一系列重要工业反应的活性催化剂,并且已表明它们的响应会受到尺寸、形态、组成和结构构型的影响。我们在此报告,通过使用微波辐射介电加热对我们的单步制备工艺进行适当改性,将这些功能引入纳米颗粒中。在保持反应时间恒定的同时,通过用封端剂的浓度控制反应动力学,获得了具有不同形态的纳米颗粒。得到了具有“近单分散”分布且平均尺寸在4至18 nm范围内的Pt@Rh核@壳八足体 - 立方体、Pt - 截角立方体、立方体和小尺寸球形纳米颗粒。通过增加微波时间,可以调节Pt@Rh的组成,并制备出具有富Rh壳层和可调Pt Rh(≤41原子%)核的纳米颗粒。最后,通过同时调节金属前驱体的相对摩尔比和微波辐射时间,设计出了组成可控的合金双金属PtRh纳米颗粒。