Construction and characterization of nano-oval BaTi0.7Fe0.3O3@NiFe2O4 nanocomposites as an effective platform for the determination of H2O2

被引:29
作者
Abou Hammad, Ali B. [1 ]
Magar, Hend S. [2 ]
Mansour, A. M. [1 ]
Hassan, Rabeay Y. A. [3 ]
El Nahrawy, Amany M. [1 ]
机构
[1] Natl Res Ctr, Solid State Phys Dept, Phys Res Div, 33 El Bohouth St, Giza 12622, Egypt
[2] Natl Res Ctr NRC, Appl Organ Chem Dept, 33 El Bohouth St, Cairo 12622, Egypt
[3] Zewail City Sci & Technol, Biosensors Res Lab, Giza 12578, Egypt
关键词
HYDROGEN-PEROXIDE; PHASE-TRANSITION; BIOSENSOR; NANOSTRUCTURE; SENSOR; DYE; MN;
D O I
10.1038/s41598-023-36076-6
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Talented di-phase ferrite/ferroelectric BaTi0.Fe-7(0).O-3(3)@NiFe2O4 (BFT@NFO) in oval nano-morphology was chemically synthesized using controlled sol-gel processes and calcined at 600 degrees C. The effects of shielding using NiFe2O4 (NFO) nanoparticles on the microstructure, phase transition, thermal, and relative permittivity of BaTi0.Fe-7(0).O-3(3) (BTF) nano-perovskite were systematically explored. X-ray diffraction patterns and Full-Prof software exhibited the forming of the BaTi2Fe4O11 hexagonal phase. TEM and SEM images demonstrated that the coating of BaTi0.Fe-7(0).O-3(3) has been successfully controlled with exquisite nano-oval NiFe2O4 shapes. The NFO shielding can significantly promote the thermal stability and the relative permittivity of BFT@NFO pero-magnetic nanocomposites and lowers the Curie temperature. Thermogravimetric and optical analysis were used to test the thermal stability and estimate the effective optical parameters. Magnetic studies showed a decrease in saturation magnetization of NiFe2O4 NPs compared to their bulk system, which is attributed to surface spin disorder. Herein, characterization and the sensitive electrochemical sensor were constructed for the evaluation of peroxide oxidation detection using the chemically adjusted nano-ovals barium titanate-iron@nickel ferrite nanocomposites. Finally, The BFT@NFO exhibited excellent electrochemical properties which can be ascribed to this compound possessing two electrochemical active components and/or the nano-ovals structure of the particles which can further improve the electrochemistry through the possible oxidation states and the synergistic effect. The result advocates that when the BTF is shielded with NFO nanoparticles the thermal, dielectric, and electrochemical properties of nano-oval BaTi0.7Fe0.3O3@NiFe2O4 nanocomposites can be synchronously developed. Thus, the production of ultrasensitive electrochemical nano-systems for the determination of hydrogen peroxide is of extensive significance.
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页数:17
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