Electrical and Dielectric Properties of Polymer-Metal Hybrid Nanocomposites - A Short Review

Santosh Nandi, Shankramma S. Kerur, S. Dhanalakshmi
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Abstract

Polymer-metal hybrid nanocomposites have garnered significant attention in recent years due to their exceptional electrical and dielectric properties, which find applications in a wide range of industries, including electronics, energy storage, and advanced materials. This review article provides a comprehensive overview of the current state-of-the-art in the field of polymer-metal hybrid nanocomposites, with a particular focus on their electrical and dielectric properties. The first section of the review delves into the synthesis and fabrication techniques employed to create these nanocomposites, highlighting the importance of controlling the dispersion and distribution of metal nanoparticles within the polymer matrix. Various approaches, such as in-situ polymerization, melt mixing, and electrospinning, are discussed in detail, along with their respective advantages and limitations.The subsequent sections explore the influence of metal nanoparticles on the electrical conductivity and dielectric constant of the nanocomposites. The role of factors such as nanoparticle size, shape, and concentration in determining these properties is thoroughly examined. Moreover, the impact of metal surface modifications and the choice of polymer matrix on enhancing electrical and dielectric performance are also addressed. In addition to discussing fundamental aspects, this review highlights practical applications of polymer-metal hybrid nanocomposites in the development of high-performance capacitors, sensors, electromagnetic shielding materials, and flexible electronics. The potential for these materials to revolutionize various technological sectors is discussed, emphasizing their role in advancing miniaturization, energy efficiency, and durability. Furthermore, the review outlines current challenges and future prospects in the field, including the need for a deeper understanding of the underlying mechanisms governing electrical and dielectric behavior in these nanocomposites. Emerging trends such as the incorporation of 2D materials and the development of multifunctional hybrid systems are also explored, hinting at exciting avenues for further research and innovation. In conclusion, polymer-metal hybrid nanocomposites offer a promising platform for tailoring electrical and dielectric properties to meet the demands of modern technology. This review serves as a valuable resource for researchers, engineers, and scientists seeking to explore the potential of these materials and drive advancements in the field of electrical and dielectric engineering.
聚合物-金属杂化纳米复合材料的电学和介电性能--简评
近年来,聚合物-金属杂化纳米复合材料因其优异的电学和介电特性而备受关注,并被广泛应用于电子、储能和先进材料等行业。这篇综述文章全面概述了当前聚合物-金属杂化纳米复合材料领域的最新进展,尤其关注其电气和介电特性。综述的第一部分深入探讨了制造这些纳米复合材料所采用的合成和制造技术,强调了控制金属纳米粒子在聚合物基体中的分散和分布的重要性。接下来的章节将探讨金属纳米颗粒对纳米复合材料导电性和介电常数的影响。纳米粒子的尺寸、形状和浓度等因素在决定这些特性方面的作用得到了深入研究。此外,还探讨了金属表面改性和聚合物基质的选择对提高导电和介电性能的影响。除了讨论基本方面,本综述还重点介绍了聚合物-金属杂化纳米复合材料在开发高性能电容器、传感器、电磁屏蔽材料和柔性电子器件方面的实际应用。本综述讨论了这些材料给各个技术领域带来变革的潜力,强调了它们在推进微型化、能源效率和耐用性方面的作用。此外,该综述还概述了该领域当前面临的挑战和未来前景,包括需要深入了解这些纳米复合材料的电气和介电行为的基本机制。此外,还探讨了新出现的趋势,如二维材料的加入和多功能混合系统的开发,为进一步的研究和创新提供了令人兴奋的途径。总之,聚合物-金属杂化纳米复合材料为定制电气和介电特性以满足现代技术需求提供了一个前景广阔的平台。本综述是研究人员、工程师和科学家探索这些材料潜力、推动电气和介电工程领域进步的宝贵资源。
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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