Manna Rakesh, Ghosh Kalyan, Srivastava Suneel Kumar
Department of Chemistry, Indian Institute of Technology Kharagpur, Kharagpur-721302, West Bengal, India.
Langmuir. 2021 Jun 22;37(24):7430-7441. doi: 10.1021/acs.langmuir.1c00804. Epub 2021 Jun 11.
The evolution of high electromagnetic absorption materials is essential in the fast growing electronic industry in overcoming electromagnetic pollution. In view of this, a series of Ni nanoparticle-decorated functionalized graphene sheets (FG/Ni) are synthesized by a solvothermal method using different ratios of FG/Ni precursors. Subsequently, FG/Ni is subjected to in situ polymerization of aniline to form FG/Ni/PANI ternary composites and characterized. The total electromagnetic interference shielding efficiency (SE) measurements on FG/Ni/PANI with an optimized FG/Ni ratio (50 mg:600 mg NiCl·6HO) exhibit enhanced performance, i.e., ∼47-65 dB (2-3.8 GHz) and ∼65-45 dB (3.8-8 GHz), following absorption as the dominant mechanism due to the matching of dielectric loss and magnetic loss. It is anticipated that such excellent performance of robust FG/Ni/PANI ternary composites at a very low thickness (0.5 mm) has great potential in the application of microwave-absorbing materials.
在快速发展的电子工业中,高电磁吸收材料的发展对于克服电磁污染至关重要。鉴于此,采用不同比例的FG/Ni前驱体通过溶剂热法合成了一系列镍纳米颗粒修饰的功能化石墨烯片(FG/Ni)。随后,对FG/Ni进行苯胺原位聚合以形成FG/Ni/PANI三元复合材料并进行表征。对具有优化FG/Ni比例(50 mg:600 mg NiCl·6H₂O)的FG/Ni/PANI进行的总电磁干扰屏蔽效率(SE)测量显示出增强的性能,即由于介电损耗和磁损耗的匹配,在吸收为主导机制的情况下,在2 - 3.8 GHz时约为47 - 65 dB,在3.8 - 8 GHz时约为65 - 45 dB。预计这种在极低厚度(0.5 mm)下具有优异性能的坚固FG/Ni/PANI三元复合材料在微波吸收材料的应用中具有巨大潜力。