Improving the ferroelectric and ferromagnetic properties of multiferroic composite materials for the decomposition of synthetic dyes

Authors

  • Quang Hoang Pham, My Hoa Ngo, Tien Danh Phan, Thu Huong Ngo
  • Xuan Thao Pham
  • Minh Hieu Nguyen
  • Thi Dung Nguyen
  • Chi Linh Dinh, Thi Viet Chinh Nguyen
  • Son Lam Dao*

Keywords:

multiferroic, nanocomposites, photocatalysis, remanent polarisation, saturation magnetisation

Abstract

A multiferroic composite of xNi0,6Zn0,4Fe2O4/(1-x) (0,5Ba(Zr0,2Ti0,8)O3 -0,5(Ba0,7Ca0,3)TiO3) (denoted as NZFO/BZT-BCT) with an average particle size of 100 nm was prepared by high-energy mechanical milling combined with the thermal annealing methods. The X-ray diffraction pattern indicates the presence of both Ni0,6Zn0,4Fe2O4(NZFO) và (0,5BaZr0,2Ti0,8O3) - 0,5(Ba0,7Ca0,3TiO3) (BZT-BCT) phases in the multiferroic composite. At room temperature, the multiferroic composite exhibits a remanent magnetisation (Mr) of approximately 0.6 emu/g and a saturation magnetisation (Ms) of about 29.2 emu/g. It is worth noting that this nanocomposite displayed exceptional photocatalytic activity in degrading Rhodamine B (RhB). After irradiation with UV radiation for 180 minutes, the degradation efficiency of RhB reached 99%. The kinetic reaction of the RhB degradation was also assessed, revealing that the apparent first-order rate constant of NZFO/BZTBCT is kp =0,019 min−1. With benefits such as easy fabrication and simple recovery using an external magnetic field, the NZFO/BZT-BCT multiferroic composite could be a potential candidate for photocatalytic environmental treatment.

DOI:

https://doi.org/10.31276/VJST.67(12).33-37

Classification number

Author Biographies

Quang Hoang Pham, My Hoa Ngo, Tien Danh Phan, Thu Huong Ngo

University of Science, Vietnam National University-Hanoi, 334 Nguyen Trai Street, Thanh Xuan Ward, Hanoi, Vietnam

Xuan Thao Pham

Hanoi University of Industry, 298 Cau Dien Street, Tay Tuu Ward, Hanoi, Vietnam

Minh Hieu Nguyen

University of Science, Vietnam National University-Hanoi, 334 Nguyen Trai Street, Thanh Xuan Ward, Hanoi, Vietnam

Thi Dung Nguyen

University of Science, Thai Nguyen University, Bac Son Street, Phan Dinh Phung Ward, Thai Nguyen Province, Vietnam

Chi Linh Dinh, Thi Viet Chinh Nguyen

Institute of Materials Science, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet Street, Nghia Do Ward, Hanoi, Vietnam

Son Lam Dao

Institute of Materials Science, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet Street, Nghia Do Ward, Hanoi, Vietnam

Graduate University of Science and Technology, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet Street, Nghia Do Ward, Hanoi, Vietnam

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Published

2025-12-25

How to Cite

Pham Quang Hoang, Ngo My Hoa, Phan Tien Danh, Ngo Thu Huong, Pham Xuan Thao, Nguyen Minh Hieu, Nguyen Thi Dung, Dinh Chi Linh, Nguyen Thi Viet Chinh, & Dao Son Lam. (2025). Improving the ferroelectric and ferromagnetic properties of multiferroic composite materials for the decomposition of synthetic dyes. Version B of Vietnam Journal of Science and Technology, 67(12). https://doi.org/10.31276/VJST.67(12).33-37

Issue

Section

Engineering and Technology

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