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Recent advances in the development of low-dimensional materials for electrochemical applications: CECRI, Karaikudi

机译:电化学应用的低维材料的最新进展:CECRI,KARAIKUDI

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摘要

Low-dimensional nanomaterials with exciting novel properties and magical performance is a rapidly growing research field that is truly multidisciplinary. A great deal of research efforts has been dedicated in the past two decades towards the preparation and characterization of these low-dimensional nanomaterials. The literature blossomed on nanomaterials already indicated about the origin of novel properties with size. However, it is equally important to know how the properties of materials and their function vary with their dimension without any size effects? To unravel this interesting question, researchers at CSIR-CECRI were working towards the development of low-dimensional materials such as 1-D and 2-D nanomaterials and study their interesting properties with special emphasis on electrochemical applications. Recent research findings from our institute suggest that the tunable properties of these low-dimensional materials are attractive for a variety of applications such as energy 'storage, sensing, catalysis and in opto-electronics.
机译:具有令人兴奋的新特性和神奇性能的低维纳米材料是一种快速生长的研究领域,即真正多学科。在过去的二十年里,在过去的二十年里致力于对这些低维纳米材料的制备和表征进行大量的研究努力。在纳米材料上弯曲的文献已经表明了关于具有大小的新颖性质的起源。然而,了解材料的性质及其功能如何随着它们的尺寸而没有任何尺寸效应而变化同样重要?为了解开这种有趣的问题,CSIR-CECRI的研究人员正在努力开发低维材料,如1-D和2-D纳米材料,并特别强调电化学应用。我们研究所最近的研究结果表明,这些低维材料的可调性能对于各种应用具有吸引力,例如能量储存,传感,催化和光电子。

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