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微乳液法合成的Ga掺杂BiGaFeO的光学、介电、磁性、光催化及抗菌性能

Optical, Dielectric, Magnetic, Photocatalytic, and Antibacterial Properties of Ga-Doped BiGaFeO Synthesized by the Microemulsion Approach.

作者信息

Nazeer Zarish, Bibi Ismat, Majid Farzana, Kamal Shagufta, Alwadai Norah, Arshad Muhammad I, Ali Adnan, Nouren Shazia, Al Huwayz Maryam, Iqbal Munawar

机构信息

Institute of Chemistry, The Islamia University of Bahawalpur, Bahawalpur 63100, Pakistan.

Department of Physics, University of the Punjab, Lahore 54590, Pakistan.

出版信息

ACS Omega. 2023 Dec 16;9(1):545-558. doi: 10.1021/acsomega.3c06132. eCollection 2024 Jan 9.

Abstract

The effect of Ga-substitution on bismuth ferrite BiGaFeO ( = 0, 0.05, 0.10, 0.15, 0.20, and 0.25) properties was investigated, which was fabricated using a microemulsion route. X-ray diffraction analysis confirmed that specimens had a single-phase rhombohedral structure with space group 3̅. The concentration of Ga had an impact on various properties such as structural parameters, crystalline size, porosity, and unit cell volume. The samples exhibited notable values for the dielectric constant, tangent loss, and dielectric loss in the low-frequency range, which declined as the frequency increased due to different polarizations. The increment in the AC conductivity was associated with rise in frequency. The - loops demonstrated that the samples became more resistive as the Ga concentration increased. The retentivity () and saturation magnetization () values reduced as the Ga content increased, although all samples had values within the range for electromagnetic materials. The Ga-substitution had a synergistic effect on the electrochemical characteristics of BiGaFeO, resulting in greater conductivity than that of undoped BiFeO. These enhanced properties contributed to their higher photocatalytic activity in the degradation of crystal violet under visible light irradiation. The doped BiGaFeO exhibited 79% dye degradation after 90 min of illumination compared to 54% for pure BiFeO. Recycling experiments confirmed the stability and reusability of the synthesized nanoparticles. The antibacterial activity of the samples was certified against various microbes, and the doped BiGaFeO showed promising activity. Thus, doped materials are good candidates for memories, dielectric resonators, and photovoltaics because of their high dielectric constant and AC conductivity, while their higher photocatalytic activity under visible light makes them promising photocatalysts for removing noxious and harmful effluents from wastewaters.

摘要

研究了Ga取代对铋铁氧体BiGaFeO( = 0、0.05、0.10、0.15、0.20和0.25)性能的影响,该铋铁氧体采用微乳液法制备。X射线衍射分析证实,试样具有空间群为3̅的单相菱方结构。Ga的浓度对各种性能有影响,如结构参数、晶体尺寸、孔隙率和晶胞体积。样品在低频范围内表现出显著的介电常数、损耗角正切和介电损耗值,由于不同的极化,随着频率增加这些值会下降。交流电导率的增加与频率的升高有关。 - 回线表明,随着Ga浓度的增加,样品的电阻性增强。尽管所有样品的 值都在电磁材料的范围内,但随着Ga含量的增加,剩磁( )和饱和磁化强度( )值降低。Ga取代对BiGaFeO的电化学特性具有协同作用,导致其电导率高于未掺杂的BiFeO。这些增强的性能有助于它们在可见光照射下对结晶紫的降解具有更高的光催化活性。与纯BiFeO的54%相比,掺杂的BiGaFeO在光照90分钟后表现出79%的染料降解率。循环实验证实了合成纳米颗粒的稳定性和可重复使用性。样品对各种微生物的抗菌活性得到了验证,掺杂的BiGaFeO表现出良好的活性。因此,掺杂材料因其高介电常数和交流电导率而成为存储器、介质谐振器和光伏器件的良好候选材料,而它们在可见光下较高的光催化活性使其成为从废水中去除有害和有毒废水的有前途的光催化剂。

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