Materials Research Centre , Indian Institute of Science , Bangalore 560012 , India.
University of Bremen , Otto-Hahn-Allee 1 , D-28359 Bremen , Germany.
Nano Lett. 2018 Mar 14;18(3):1903-1907. doi: 10.1021/acs.nanolett.7b05217. Epub 2018 Feb 8.
Ultrathin bimetallic nanowires are of importance and interest for applications in electronic devices such as sensors and heterogeneous catalysts. In this work, we have designed a new, highly reproducible and generalized wet chemical method to synthesize uniform and monodispersed Au-based alloy (AuCu, AuPd, and AuPt) nanowires with tunable composition using microwave-assisted reduction at the liquid-liquid interface. These ultrathin alloy nanowires are below 4 nm in diameter and about 2 μm long. Detailed microstructural characterization shows that the wires have an face centred cubic (FCC) crystal structure, and they have low-energy twin-boundary and stacking-fault defects along the growth direction. The wires exhibit remarkable thermal and mechanical stability that is critical for important applications. The alloy wires exhibit excellent electrocatalytic activity for methanol oxidation in an alkaline medium.
超薄双金属纳米线在电子设备(如传感器和多相催化剂)中的应用具有重要意义和价值。在这项工作中,我们设计了一种新的、高度可重复和通用的湿化学方法,通过在液-液界面处的微波辅助还原,合成具有可调组成的均匀和单分散的基于金的合金(AuCu、AuPd 和 AuPt)纳米线。这些超薄合金纳米线的直径小于 4nm,长度约为 2μm。详细的微观结构表征表明,这些纳米线具有面心立方(FCC)晶体结构,并且在生长方向上具有低能孪晶界和位错缺陷。这些纳米线表现出显著的热和机械稳定性,这对于重要的应用至关重要。合金纳米线在碱性介质中对甲醇氧化具有优异的电催化活性。