Linsa K S Mary, C Viji, Pavithran Roshila K, Rohith R, Varma Sreekanth J, Ganesanpotti Subodh, Sibi K S, Sajeev U S
Post Graduate and Research Department of Physics, Government College Kottayam Nattakom Kerala 686013 India
Post Graduate and Research Department of Physics, Maharaja's College Ernakulam Kochi Kerala 682011 India.
RSC Adv. 2025 Sep 10;15(39):32654-32666. doi: 10.1039/d5ra04475h. eCollection 2025 Sep 5.
The need for advanced electromagnetic interference (EMI) shielding materials with minimal secondary radiation has driven interest in absorption-dominated or green EMI shielding systems. This work explored the development of efficient and frequency-stabilized green EMI shielding material based on polyaniline (PANI) by incorporation of cobalt nickel ferrite (CNF) nanoparticles into the polymer matrix. EMI shielding effectiveness (SE) was measured in the K-band (18-26.5 GHz), achieving a maximum value of 68.96 dB for PANI/CNF10. All composites investigated in this study surpassed the commercial SE threshold of 30 dB, with shielding primarily governed by absorption. Reduced skin depth and high green index (GI) approaching unity confirmed their efficient absorption behavior. Further, multi-scale attributes of the composites were correlated to each other as well as to their EMI shielding behavior. Complementary optical, structural, and morphological analyses confirmed successful CNF integration and interaction with the PANI matrix. Dielectric and magnetic studies revealed enhanced AC conductivity, non-Debye relaxation, and improved coercivity, attributed to the synergistic effect of CNF addition into the PANI matrix. These results position PANI/CNF composites as promising green EMI shielding materials for next-generation electronic applications.
对具有最小二次辐射的先进电磁干扰(EMI)屏蔽材料的需求,激发了人们对以吸收为主的或绿色EMI屏蔽系统的兴趣。这项工作通过将钴镍铁氧体(CNF)纳米颗粒掺入聚合物基体中,探索了基于聚苯胺(PANI)的高效且频率稳定的绿色EMI屏蔽材料的开发。在K波段(18 - 26.5 GHz)测量了EMI屏蔽效能(SE),PANI/CNF10的最大值达到68.96 dB。本研究中所研究的所有复合材料均超过了30 dB的商业SE阈值,屏蔽主要由吸收主导。降低的趋肤深度和接近1的高绿色指数(GI)证实了它们的高效吸收行为。此外,复合材料的多尺度属性相互关联,也与它们的EMI屏蔽行为相关。互补的光学、结构和形态分析证实了CNF成功地整合到PANI基体中并与之相互作用。介电和磁性研究表明,由于在PANI基体中添加CNF的协同效应,交流电导率增强、非德拜弛豫以及矫顽力提高。这些结果使PANI/CNF复合材料成为下一代电子应用中有前景的绿色EMI屏蔽材料。