Subhashini N, Revathi S, Ubaidullah Mohd, Al-Enizi Abdullah M, Muthulakshmi S, Thiripurasundari D, Shaikh Shoyebmohamad F, Nafady Ayman, Moydeen Abdulhameed Meera, Alanzi Nouf B, Alkhalifah Rayana Ibrahim, Dash Chandra Sekhar, Sundararajan M, Sukumar M
School of Electronics Engineering, Vellore Institute of Technology (VIT), Chennai, 600 127, India.
Department of Chemistry, College of Science, King Saud University, Riyadh, 11451, Saudi Arabia.
Dalton Trans. 2023 Feb 28;52(9):2735-2748. doi: 10.1039/d2dt03138h.
We present the combustion-based synthesis of BiFeO (BFO) and Gd:BiFeO perovskite nanoparticles. XRD analysis demonstrates that the undoped BFO ( = 0) perovskite sample shows a single perovskite phase with a rhombohedral structure. However, increase in the Gd content from = 0.05 and 0.15 to 0.25 led to the occurrence of a structural phase transformation from rhombohedral (BiFeO) to orthorhombic (BiFeO). With an increase in the Gd-dopant the average crystallite size of rhombohedral structures increased from 16 to 23 nm. The perovskite samples were examined using XPS, which confirmed the presence of Bi, Gd, Fe, and O ions. FT-IR spectroscopy indicated the existence of elemental functional groups in the synthesized perovskite nanoparticles. Furthermore, the direct band gap measured by DRS reduced from 2.16 to 2.0 eV as the Gd concentration increased. The nanoparticles of the BFO perovskite had an uneven shape, a tendency to agglomerate, and fused grains with defined grain boundaries. At ambient temperature, both the undoped and Gd:BFO perovskite nanoparticles exhibit a ferromagnetic characteristic. It was found that the BET surface area of the undoped and Gd-doped BFO perovskite nanoparticles varied progressively from 4.38 to 33.52 m g. The catalytic oxidation studies conducted in a batch reactor under air conditions revealed that the synthesized catalysts, in particular, Gd:BFO ( = 0.25), exhibited higher conversion and selectivity efficiencies for glycerol (con. 100% and sel. 99.5%, respectively).
我们展示了基于燃烧法合成的BiFeO(BFO)和Gd:BiFeO钙钛矿纳米颗粒。XRD分析表明,未掺杂的BFO( = 0)钙钛矿样品呈现出具有菱面体结构的单一钙钛矿相。然而,Gd含量从 = 0.05、0.15增加到0.25会导致结构从菱面体(BiFeO)向正交晶系(BiFeO)转变。随着Gd掺杂量的增加,菱面体结构的平均微晶尺寸从16纳米增加到23纳米。使用XPS对钙钛矿样品进行了检测,证实了Bi、Gd、Fe和O离子的存在。FT-IR光谱表明合成的钙钛矿纳米颗粒中存在元素官能团。此外,随着Gd浓度的增加,通过DRS测量的直接带隙从2.16 eV降低到2.0 eV。BFO钙钛矿纳米颗粒形状不均匀,有团聚倾向,且晶粒融合,晶界清晰。在室温下,未掺杂和Gd:BFO钙钛矿纳米颗粒均表现出铁磁特性。发现未掺杂和Gd掺杂的BFO钙钛矿纳米颗粒的BET表面积从4.38逐渐变化到33.52 m g。在空气条件下的间歇反应器中进行的催化氧化研究表明,合成的催化剂,特别是Gd:BFO( = 0.25),对甘油表现出更高的转化率和选择性效率(分别为转化率100%和选择性99.5%)。