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用于电催化和表面增强拉曼散射应用的钯纳米枝晶的简便快速合成。

Facile and rapid synthesis of Pd nanodendrites for electrocatalysis and surface-enhanced Raman scattering applications.

作者信息

Kannan Palanisamy, Dolinska Joanna, Maiyalagan Thandavarayan, Opallo Marcin

机构信息

Institute of Physical Chemistry, Polish Academy of Sciences, 44/52 ul. Kasprzaka, 01-224 Warsaw, Poland.

出版信息

Nanoscale. 2014 Oct 7;6(19):11169-76. doi: 10.1039/c4nr02896a.

Abstract

Numerous properties from metal nanostructures can be tuned by controlling both their size and shape. In particular, the latter is extremely important because the type of crystalline surface affects the surface electronic density. This paper describes a simple approach to the synthesis of highly-structured, anisotropic palladium nanostructured dendrites. They were obtained using an eco-friendly biomolecule 5-hydroxytryptophan, which acts as both a reducing and stabilizing agent. The growth mechanism is proposed for the evolution of dendrites morphology. It was found that the concentration of 5-hydroxytryptophan played a vital role on the morphology of the nanostructured Pd dendrites. This nanomaterial shows enhanced electrocatalytic performance towards the oxidation of formic acid, and it exhibits surface-enhanced Raman scattering properties towards the prostate specific antigen. These properties may be explored in fuel cells and biosensors, respectively.

摘要

通过控制金属纳米结构的尺寸和形状,可以调节其众多特性。特别是,形状极为重要,因为晶体表面类型会影响表面电子密度。本文描述了一种合成高度结构化、各向异性钯纳米结构树枝状晶体的简单方法。它们是使用环保型生物分子5-羟色氨酸获得的,该分子兼具还原剂和稳定剂的作用。文中提出了树枝状晶体形态演变的生长机制。研究发现,5-羟色氨酸的浓度对纳米结构钯树枝状晶体的形态起着至关重要的作用。这种纳米材料对甲酸氧化表现出增强的电催化性能,对前列腺特异性抗原表现出表面增强拉曼散射特性。这些特性可分别在燃料电池和生物传感器中加以探索。

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