Materials Research Department, GSI Helmholtzzentrum für Schwerionenforschung GmbH, Darmstadt, Germany.
Materials Research Department, GSI Helmholtzzentrum für Schwerionenforschung GmbH, Darmstadt, Germany ; Department of Materials- and Geo-Science, Technische Universität Darmstadt, Darmstadt, Germany.
Beilstein J Nanotechnol. 2015 Jun 8;6:1272-80. doi: 10.3762/bjnano.6.131. eCollection 2015.
Multicomponent heterostructure nanowires and nanogaps are of great interest for applications in sensorics. Pulsed electrodeposition in ion-track etched polymer templates is a suitable method to synthesise segmented nanowires with segments consisting of two different types of materials. For a well-controlled synthesis process, detailed analysis of the deposition parameters and the size-distribution of the segmented wires is crucial.
The fabrication of electrodeposited AuAg alloy nanowires and segmented Au-rich/Ag-rich/Au-rich nanowires with controlled composition and segment length in ion-track etched polymer templates was developed. Detailed analysis by cyclic voltammetry in ion-track membranes, energy-dispersive X-ray spectroscopy and scanning electron microscopy was performed to determine the dependency between the chosen potential and the segment composition. Additionally, we have dissolved the middle Ag-rich segments in order to create small nanogaps with controlled gap sizes. Annealing of the created structures allows us to influence their morphology.
AuAg alloy nanowires, segmented wires and nanogaps with controlled composition and size can be synthesised by electrodeposition in membranes, and are ideal model systems for investigation of surface plasmons.
多组分异质结构纳米线和纳米间隙在传感器应用中具有重要意义。在离子刻蚀聚合物模板中的脉冲电沉积是一种合适的方法,可以合成由两种不同类型材料组成的分段纳米线。为了实现良好的控制合成过程,对沉积参数和分段纳米线的尺寸分布进行详细分析至关重要。
在离子刻蚀聚合物模板中制备了具有可控成分和分段长度的电沉积 AuAg 合金纳米线和分段富 Au/富 Ag/富 Au 纳米线。通过在离子通道膜中进行循环伏安法、能谱分析和扫描电子显微镜详细分析,确定了所选电位与分段成分之间的依赖性。此外,我们已经溶解了中间富 Ag 的分段,以创建具有可控间隙尺寸的小纳米间隙。所创建结构的退火可以影响它们的形态。
通过在膜中进行电沉积,可以合成具有可控成分和尺寸的 AuAg 合金纳米线、分段纳米线和纳米间隙,它们是研究表面等离子体的理想模型系统。