Sajanlal Panikkanvalappil R, Sreeprasad Theruvakkattil S, Samal Akshaya K, Pradeep Thalappil
DST Unit of Nanoscience (DST UNS), Department of Chemistry, Indian Institute of Technology Madras, Chennai, India.
Nano Rev. 2011;2. doi: 10.3402/nano.v2i0.5883. Epub 2011 Feb 16.
Comprehensive knowledge over the shape of nanomaterials is a critical factor in designing devices with desired functions. Due to this reason, systematic efforts have been made to synthesize materials of diverse shape in the nanoscale regime. Anisotropic nanomaterials are a class of materials in which their properties are direction-dependent and more than one structural parameter is needed to describe them. Their unique and fine-tuned physical and chemical properties make them ideal candidates for devising new applications. In addition, the assembly of ordered one-dimensional (1D), two-dimensional (2D), and three-dimensional (3D) arrays of anisotropic nanoparticles brings novel properties into the resulting system, which would be entirely different from the properties of individual nanoparticles. This review presents an overview of current research in the area of anisotropic nanomaterials in general and noble metal nanoparticles in particular. We begin with an introduction to the advancements in this area followed by general aspects of the growth of anisotropic nanoparticles. Then we describe several important synthetic protocols for making anisotropic nanomaterials, followed by a summary of their assemblies, and conclude with major applications.
全面了解纳米材料的形状是设计具有所需功能的器件的关键因素。基于此原因,人们已做出系统性努力,在纳米尺度范围内合成各种形状的材料。各向异性纳米材料是一类其性质依赖于方向且需要不止一个结构参数来描述的材料。它们独特且经过微调的物理和化学性质使其成为设计新应用的理想候选材料。此外,各向异性纳米粒子的有序一维(1D)、二维(2D)和三维(3D)阵列的组装为所得系统带来了新颖的性质,这将与单个纳米粒子的性质完全不同。本综述概述了各向异性纳米材料领域,特别是贵金属纳米粒子的当前研究情况。我们首先介绍该领域的进展,接着阐述各向异性纳米粒子生长的一般方面。然后我们描述几种制备各向异性纳米材料的重要合成方法,随后总结它们的组装情况,并以主要应用作为结尾。