Manisha Thakur, Charanjeet Singh, K.C. James Raju, Arun B, Hamnesh Mahajan, Ravinder Pal Singh, A.K. Srivastava
In this communication, we prepared composites of Cobalt (Co) and Chromium (Cr) substituted strontium ferrite (Sr(CoCr) x Fe 12-2x O 19 ) with spinel ferrite (CoFe 2 O 4 ) at a 4:1 weight ratio, varying the substitution levels from x = 0.0 to 1.0. The X-ray diffraction analysis confirmed the presence of both hard (M-type) and soft (spinel) ferrite phases in the substituted composites, without any impurity phase. Fourier infrared spectroscopy identified two distinct absorption bands at 584 cm −1 cm −1 and 542 cm −1 , primarily associated with iron oxide, and a band at 409.6 cm −1 attributed to Co O bonds. Field emission scanning electron microscopy (FESEM) revealed hexagonal platelet-shaped particles alongside randomly oriented small spherical-shaped grains. Substitution improves the performance of microwave absorbers, such as reflection loss increased from x = 0.0 (−10.54 dB) to x = 1.0 (−29.60 dB, more than 90% absorption); −10 dB bandwidth of 1 GHz was observed in the x = 1.0 sample at thickness 8.1 mm. Composite x = 0.8 displayed a bandwidth-to-thickness ratio and percentage bandwidth of 3.4E-04 and 8.9% with 8.5 mm at 9.157 GHz frequency. Composite x = 0.8 showed the optimal values for Z real (1.091) and Z img (−0.054), resulting in the highest reflection loss (−29.92 dB) at 9.15 GHz with 8.5 mm thickness.