상세 보기
- Mallesh, Shanigaram;
- Mondal, Pradip;
- Kavita, Srikanti;
- Srinivas, Veeturi;
- Nam, Young-Woo
WEB OF SCIENCE
20SCOPUS
24초록
Magnetic spinel ferrite nanoparticles (NPs) have a broad scope of applications based on their structural properties, including in lithium-ion batteries, catalysts, electrochemical energy storage, drug delivery, magnetic hyperthermia, and photothermia. In this study, we investigated the structure, crystallographic phase formations, and magnetic properties of Ni-substituted MnZn ferrites (MZFs), Mn(0.6-x)Zn(0.4-y)Ni(x+y)Fe2O4 (x = 0-0.6, y = 0; y = 0-0.4, x = 0) compositions of as-prepared (AP) and air annealed (350-1200 degrees C) samples. All AP NPs exhibited a pure spinel structure. Ni-MZF compositions annealed at 600 degrees C had high alpha-Fe2O3 secondary phase content in Ni-MZFs (Ni substituted for Zn), whereas Ni-MZFs with x = 0.4 (Ni substituted for Mn) had no impurities, and its magnetization (50 emu/g) was enhanced compared with that of the other samples. X-ray photoelectron spectroscopy revealed that Fe3+ cations were present in tetrahedral and octahedral sites. The single spinel phase reappeared with improved crystallinity in all Ni-MZFs by annealing at 1200 degrees C and exhibited superior magnetization (60-73 emu/g) compared with that of MZF (35 emu/g). Additionally, the spinel phase was stabilized in the ZnO- and SiO2-coated Ni-MZF core shell structures annealed at 700 degrees C with higher magnetization than MZF. Moreover, Ni-MZF core shell structures exhibited biocompatibility and may have biomedical applications.
키워드
- 제목
- Effect of Ni substitution and annealing temperature on structural and magnetic properties of MnZn-Ferrites: Cytotoxicity study of ZnO and SiO2 coated core shell structures
- 저자
- Mallesh, Shanigaram; Mondal, Pradip; Kavita, Srikanti; Srinivas, Veeturi; Nam, Young-Woo
- 발행일
- 2022-12
- 유형
- Article
- 권
- 605