Ikram Muhammad, Ul Haq Muhammad Ahsan, Haider Ali, Haider Junaid, Ul-Hamid Anwar, Shahzadi Iram, Bari Muhammad Ahsaan, Ali Salamat, Goumri-Said Souraya, Kanoun Mohammed Benali
Solar Cell Applications Research Lab, Department of Physics, Government College University Lahore Lahore 54000 Punjab Pakistan
Department of Physics, Riphah Institute of Computing and Applied Sciences (RICAS), Riphah International University 14 Ali Road Lahore Pakistan.
Nanoscale Adv. 2022 Aug 16;4(18):3996-4008. doi: 10.1039/d2na00361a. eCollection 2022 Sep 13.
Degradation in the presence of visible light is essential for successfully removing dyes from industrial wastewater, which is pivotal for environmental and ecological safety. In recent years, photocatalysis has emerged as a prominent technology for wastewater treatment. This study aimed to improve the photocatalytic efficiency of synthesized TiO quantum dots (QDs) under visible light by barium (Ba) doping. For this, different weight ratios (2% and 4%) of Ba-doped TiO QDs were synthesized under ambient conditions a simple and modified chemical co-precipitation approach. The QD crystal structure, functional groups, optical features, charge-carrier recombination, morphological properties, interlayer spacing, and presence of dopants were analyzed. The results showed that for 4% Ba-doped TiO, the effective photocatalytic activity in the degradation process of methylene blue (MB) dye was 99.5% in an alkaline medium. Density functional theory analysis further corroborated that the band gap energy was reduced when Ba was doped into the TiO lattice, implying a considerable redshift of the absorption edge due to in-gap states near the valence band.
在可见光存在下的降解对于从工业废水中成功去除染料至关重要,这对环境和生态安全至关重要。近年来,光催化已成为一种突出的废水处理技术。本研究旨在通过钡(Ba)掺杂提高合成的TiO量子点(QDs)在可见光下的光催化效率。为此,在环境条件下采用简单且改进的化学共沉淀法合成了不同重量比(2%和4%)的Ba掺杂TiO量子点。对量子点的晶体结构、官能团、光学特性、电荷载流子复合、形态特性、层间距和掺杂剂的存在进行了分析。结果表明,对于4% Ba掺杂的TiO,在碱性介质中,亚甲基蓝(MB)染料降解过程中的有效光催化活性为99.5%。密度泛函理论分析进一步证实,当Ba掺杂到TiO晶格中时,带隙能量降低,这意味着由于价带附近的能隙态,吸收边缘发生了相当大的红移。