Ikram M, Shahzadi A, Hayat S, Nabgan W, Ul-Hamid A, Haider A, Noor M, Goumri-Said Souraya, Kanoun Mohammed Benali, Ali S
Solar Cell Application Research Lab, Department of Physics, Government College University Lahore Lahore 54000 Punjab Pakistan
Faculty of Pharmacy, The University of Lahore Lahore 54000 Pakistan.
RSC Adv. 2022 Jun 7;12(27):16991-17004. doi: 10.1039/d2ra03006c.
Novel tantalum (Ta) and chitosan (CS)-doped CuO nanorods (NRs) were synthesized using a single step co-precipitation route. Different concentrations (2 and 4%) of Ta were used in fixed amounts of CS and CuO to examine their catalytic activity and antimicrobial potential. For critical analysis, synthesized NRs were systematically examined using XRD, FTIR HRTEM, EDS, UV-Vis and PL spectroscopy. The XRD technique revealed the monoclinic structure of CuO while an increase in its crystallite size (from 15.5 to 18.5 nm) was observed upon doping. FTIR spectra were examined to study the functional groups of CuO where peaks at 514 cm and 603 cm confirmed the formation of CuO NRs. PL spectra depicted the charge transfer efficiency of the synthesized samples. The presence of dopants (Ta and CS) and constituent elements (Cu, O) was detected using EDS spectra. Additionally, the pH based catalytic performance of fabricated NRs revealed 99.7% dye degradation of toxic methylene blue (MB) dye in neutral media, 99.4% in basic media and 99.5% in acidic media along with promising antibacterial activities for Gram negative/positive bacteria, respectively upon doping of Ta (4%) into CS/CuO. The adsorption energies of CuO co-doped with CS/Ta led to the creation of stable structures that were investigated theoretically using density functional theory.
采用一步共沉淀法合成了新型钽(Ta)和壳聚糖(CS)掺杂的氧化铜纳米棒(NRs)。在固定量的CS和CuO中使用不同浓度(2%和4%)的Ta,以研究它们的催化活性和抗菌潜力。为了进行批判性分析,使用X射线衍射(XRD)、傅里叶变换红外光谱(FTIR)、高分辨率透射电子显微镜(HRTEM)、能谱仪(EDS)、紫外可见光谱(UV-Vis)和光致发光光谱(PL)对合成的纳米棒进行了系统研究。XRD技术揭示了CuO的单斜结构,同时观察到掺杂后其微晶尺寸增加(从15.5纳米增加到18.5纳米)。对FTIR光谱进行了研究,以分析CuO的官能团,其中在514厘米和603厘米处的峰证实了CuO纳米棒的形成。PL光谱描绘了合成样品的电荷转移效率。使用EDS光谱检测了掺杂剂(Ta和CS)和组成元素(Cu、O)的存在。此外,制备的纳米棒基于pH的催化性能显示,在中性介质中对有毒亚甲基蓝(MB)染料的降解率为99.7%,在碱性介质中为99.4%,在酸性介质中为99.5%,并且在将Ta(4%)掺杂到CS/CuO中后,对革兰氏阴性/阳性细菌分别具有良好的抗菌活性。理论上使用密度泛函理论研究了CS/Ta共掺杂CuO的吸附能,结果表明形成了稳定的结构。