Bheema Rajesh Kumar, J Gopu, Bhaskaran Krithika, Verma Akshat, Chavali Murthy, Etika Krishna Chaitanya
Department of Chemical Engineering, BITS Pilani Pilani Rajasthan 333 031 India
Office of the Dean Research, Dr. Vishwanath Karad MIT World Peace University Survey No, 124, Paud Rd, Kothrud Pune Maharashtra 411038 India.
Nanoscale Adv. 2024 Sep 26;6(23):5773-802. doi: 10.1039/d4na00572d.
The rapid proliferation and extensive use of electronic devices have resulted in a meteoric increase in electromagnetic interference (EMI), which causes electronic devices to malfunction. The quest for the best shielding material to overcome EMI is boundless. This pursuit has taken different directions, right from materials to structures to process, up to the concept of sustainable materials. The emergence of polymer composites has substituted metal and metal alloy-based EMI shielding materials due to their unique features such as light weight, excellent corrosion resistance, and superior electrical, dielectric, thermal, mechanical, and magnetic properties that are beneficial for suppressing the EMI. Therefore, polymer nanocomposites are an extensively explored EMI shielding materials strategy. This review focuses on recent research developments with a major emphasis on structural aspects and processing for enhancing the EMI shielding effectiveness of polymer nanocomposites with their underlying mechanisms and some glimpses of the sustainability approaches taken in this field.
电子设备的迅速普及和广泛使用导致电磁干扰(EMI)急剧增加,这会使电子设备出现故障。寻求最佳屏蔽材料以克服电磁干扰的努力是无止境的。这种追求已经朝着不同方向发展,从材料到结构再到工艺,直至可持续材料的概念。聚合物复合材料的出现因其独特特性,如重量轻、优异的耐腐蚀性以及有利于抑制电磁干扰的卓越电学、介电、热学、力学和磁学性能,而取代了金属和金属合金基电磁干扰屏蔽材料。因此,聚合物纳米复合材料是一种被广泛探索的电磁干扰屏蔽材料策略。本综述重点关注近期的研究进展,主要强调结构方面以及用于提高聚合物纳米复合材料电磁干扰屏蔽效能的加工方法,同时阐述其潜在机制,并简要介绍该领域所采用的可持续发展方法。