ROLE OF POROUS NANOMATERIAL’S IN WATER PURIFICATION, ELECTRONICS, DRUG DELIVERY AND STORAGE: A COMPREHENSIVE REVIEW

Pub Date : 2021-01-01 DOI:10.15251/jobm.2021.131.11
N. V. Krishna Prasad, T. Anil Babu, M. Sarma, S. Ramesh, K. Nirisha, T. Mathew, N. Madhavi
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引用次数: 1

Abstract

Nanoporous materials and their study gained tremendous significance in view of their potential applications such as drug delivery, water purification, biosensing, electronics and storage etc. Based on their synthesis with required shape and size make them application oriented. Nanoporous materials are materials with pore size of hundred nanometres or less. They have inorganic or organic framework supporting regular porous structure. The pores in these materials are occupied with fluid. These materials represent a transition from atom to solid in which pores of uniform shape and diameter need to be obtained for them to be used in some applications. Nanoporous materials possess specific electric, optical and magnetic properties that make them highly potential in applications related to signal transmission, energy, biological applications, catalysis, gas storage and medicine. In spite of existing nanoporous by nature tailored materials can be produced with combination of polymers with different melting points. A nanoporous material with accurate pore sizes allow certain matter to pass through, while blocking others. In view of their tailored properties they find extensive applications at present and in near future. Keeping this in mind, an attempt was made to review the potential applications of these materials with more emphasis on water treatment and drug delivery reported in the last five years in a nut shell.
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多孔纳米材料在水净化、电子、药物传递和储存中的作用:综述
纳米多孔材料在药物输送、水净化、生物传感、电子和存储等方面具有重要的应用前景。在对其形状和尺寸进行综合的基础上,使其具有应用价值。纳米多孔材料是孔径在百纳米或更小的材料。它们具有无机或有机骨架支撑规则的多孔结构。这些材料中的孔隙被流体所占据。这些材料代表了从原子到固体的过渡,其中需要获得均匀形状和直径的孔,以便在某些应用中使用。纳米多孔材料具有特殊的电学、光学和磁性,这使得它们在信号传输、能源、生物应用、催化、气体储存和医学等方面具有很大的应用潜力。尽管现有的纳米多孔材料是天然的,但可以通过不同熔点的聚合物的组合来生产定制材料。具有精确孔径的纳米多孔材料允许某些物质通过,而阻挡其他物质。鉴于其量身定制的特性,它们在目前和不久的将来都有广泛的应用。鉴于此,本文对近五年来这些材料在水处理和给药方面的潜在应用进行了综述。
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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