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Electrospun single-phase spinel magnetic high entropy oxide nanoparticles via low-temperature ambient annealing.
Han, Xiao; Li, Dian; Zhou, Jingyi; Zheng, Yufeng; Kong, Lingyan; Li, Lin; Yan, Feng.
Affiliation
  • Han X; Department of Metallurgical and Materials Engineering, The University of Alabama Tuscaloosa 35487 AL USA.
  • Li D; Department of Chemical and Materials Engineering, University of Nevada Reno Reno 89557 NV USA.
  • Zhou J; Department of Human Nutrition and Hospitality Management, The University of Alabama Tuscaloosa 35487 AL USA.
  • Zheng Y; Department of Chemical and Materials Engineering, University of Nevada Reno Reno 89557 NV USA.
  • Kong L; Department of Human Nutrition and Hospitality Management, The University of Alabama Tuscaloosa 35487 AL USA.
  • Li L; Materials Science Program, School for Engineering of Matter, Transport, and Energy, Arizona State University Tempe 85287 AZ USA fengyan@asu.edu.
  • Yan F; Materials Science Program, School for Engineering of Matter, Transport, and Energy, Arizona State University Tempe 85287 AZ USA fengyan@asu.edu.
Nanoscale Adv ; 5(11): 3075-3083, 2023 May 30.
Article in En | MEDLINE | ID: mdl-37260480
ABSTRACT
High entropy oxide nanoparticles (HEO NPs) with multiple component elements possess improved stability and multiple uses for functional applications, including catalysis, data memory, and energy storage. However, the synthesis of homogenous HEO NPs containing five or more immiscible elements with a single-phase structure is still a great challenge due to the strict synthetic conditions. In particular, several synthesis methods of HEO NPs require extremely high temperatures. In this study, we demonstrate a low cost, facile, and effective method to synthesize three- to eight-element HEO nanoparticles by a combination of electrospinning and low-temperature ambient annealing. HEO NPs were generated by annealing nanofibers at 330 °C for 30 minutes under air conditions. The average size of the HEO nanoparticles was ∼30 nm and homogenous element distribution was obtained from post-electrospinning thermal decomposition. The synthesized HEO NPs exhibited magnetic properties with the highest saturation magnetization at 9.588 emu g-1 and the highest coercivity at 147.175 Oe for HEO NPs with four magnetic elements while integrating more nonmagnetic elements will suppress the magnetic response. This electrospun and low-temperature annealing method provides an easy and flexible design for nanoparticle composition and economic processing pathway, which offers a cost- and energy-effective, and high throughput entropy nanoparticle synthesis on a large scale.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Nanoscale Adv Year: 2023 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Nanoscale Adv Year: 2023 Document type: Article