Department of Chemistry, Government College University, Faisalabad, Pakpattan Road, Sahiwal, Punjab, 57000, Pakistan.
Department of Chemistry, Government College University, Faisalabad, Pakpattan Road, Sahiwal, Punjab, 57000, Pakistan.
Int J Biol Macromol. 2024 Apr;263(Pt 1):130096. doi: 10.1016/j.ijbiomac.2024.130096. Epub 2024 Feb 12.
Co-precipitation method was adopted to synthesize ternary heterostructure catalysts La/CS-CoSe NSs (lanthanum/chitosan‑cobalt selenide nanostructures) without the use of a surfactant. During synthesis, a fixed amount (3 wt%) of CS was doped with 2 and 4 wt% La to control the growth, recombination rate and stability of CoSe NSs. The doped samples served to enhance the surface area, porosity and active sites for catalytic degradation of rhodamine B dye and antibacterial potential against Staphylococcus aureus (S. aureus). Additionally, the synthesized catalysts were examined for morphological, structural and optical characteristics to assess the influence of dopants to CoSe. XRD spectra verified the hexagonal and cubic structure of CoSe, whereas the porosity of the undoped sample (CoSe) increased from 45 to 60 % upon incorporation of dopants (La and Cs). Among the samples analyzed during this study, 4 % La/CS-CoSe exhibited significant bactericidal behavior as well as the highest catalytic reduction of rhodamine B dye in a neutral environment. Molecular docking analysis was employed to elucidate the underlying mechanism behind the bactericidal activity exhibited by CS-CoSe and La/CS-CoSe NSs against DHFR and DNA gyrase.
采用共沉淀法合成三元异质结构催化剂 La/CS-CoSe NSs(镧/壳聚糖-硒化钴纳米结构),无需使用表面活性剂。在合成过程中,将一定量(3wt%)的 CS 掺杂 2wt%和 4wt%的 La 以控制 CoSe NSs 的生长、复合速率和稳定性。掺杂的样品用于提高比表面积、孔隙率和催化降解罗丹明 B 染料的活性位点以及对金黄色葡萄球菌(S. aureus)的抗菌潜力。此外,还对合成的催化剂进行了形貌、结构和光学特性的检查,以评估掺杂剂对 CoSe 的影响。XRD 光谱证实了 CoSe 的六方和立方结构,而未掺杂样品(CoSe)的孔隙率从 45%增加到 60%,掺杂了 La 和 Cs。在本研究分析的样品中,4wt% La/CS-CoSe 表现出显著的杀菌行为,以及在中性环境下对罗丹明 B 染料的最高催化还原。采用分子对接分析阐明了 CS-CoSe 和 La/CS-CoSe NSs 对 DHFR 和 DNA 拓扑异构酶的杀菌活性的潜在机制。