Properties of Nanomaterials and Environment

Phool Shahzadi
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Abstract

The chapter provides a timely review of the various properties of nonmaterial and their applications into environmental compartments. An extensive variety of poisonous chemicals is discharged into the environment because of globalization and industrialization. The dimensional, compositional, geometric, and structural properties are fundamental to convey usefulness of the nanomaterials. The controlled sizes and shapes of nanoparticles are anticipated to yield unique catalytic, electrochemical, and photochemical properties. The electrochemical properties of monolayer-functional metal nanoparticles are expected to be controlled by the particle sizes. Metal nanomaterials have interesting optical properties due to strong surface plasmon absorption and field enhancement effects; metal oxides lack visible absorption due to very large bandgap. Nanocomposites have complex optical properties. Nanomaterials present gigantic advantages on diverse applications, catalysis, imaging, biotechnological, and sensor applications due to their improved properties.
纳米材料的性质与环境
本章及时回顾了非材料的各种特性及其在环境隔间中的应用。由于全球化和工业化,各种各样的有毒化学物质被排放到环境中。纳米材料的尺寸、组成、几何和结构特性是传达其实用性的基础。纳米颗粒的大小和形状的控制,预计将产生独特的催化,电化学和光化学性质。单层功能金属纳米粒子的电化学性能是由粒径控制的。金属纳米材料具有很强的表面等离子体吸收和场增强效应,具有有趣的光学特性;金属氧化物由于带隙非常大而缺乏可见光吸收。纳米复合材料具有复杂的光学性质。纳米材料由于其性能的改进,在催化、成像、生物技术和传感器等应用领域具有巨大的优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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