Effect of carbon quantum dots doping on structural, optical, and antibacterial properties of barium tungstate nanocomposite material

IF 5.8 2区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Journal of Saudi Chemical Society Pub Date : 2024-05-01 DOI:10.1016/j.jscs.2024.101872
Nouman Aslam , Saba Akram , M.I. Yousaf , Abdulrahman Alshammari , Norah A. Albekairi , D.J. Fu
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Abstract

Local bacterial infection remains an increasingly severe threat to human health worldwide, and infection control is still a challenging task. Carbon Quantum Dots (CQSs) and barium tungstate show antibacterial properties. CQDs doped Barium Tungstate (BaWO4) are synthesized by using a hydrothermal route and their optical and antimicrobial activities against the Gram-positive bacteria staphylococcus aureus and optical properties were investigated. The UV–Vis reveals a shift in the bandgap from 3.62 eV to 2.93 eV due to doping of CQDs in BaWO4. The structure of the CQDs/BaWO4 were studied by XRD, which shows CQDs doped BaWO4 samples possess tetragona4 werelite structure with the preferred orientation of (1 1 2) identified by XRD at 26° having crystallite size ∼ 31 nm. Nanocomposite BaWO4/CQDs exhibit a spherical-like shape and are composed of Ba, O, W and C according to the design of the experiment. Zeta sizer of CQDs by DLS shows the size of CQDs is 7.65 nm. The FT-IR shows the presence of functional groups in doped material like CC, CO, and COOH bonds which indicate that the C-dots are functionalized with epoxy, carbonyl, hydroxyl, and carboxylic acid groups. Their elemental composition and surface morphology were studied by EDS which shows the percentage variation of CQDs in BaWO4, SEM results show the change in shape of the sample by adding CQDs to BaWO4. The TEM image proves the presence of doped material in the BaWO4. The PL spectra reveals the emission spectra shift towards a higher wavelength and absorption increases. The qualitative analysis shows the antimicrobial activity and enlargement of the inhibition zone and quantitative analysis confirms it.

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掺杂碳量子点对钨酸钡纳米复合材料结构、光学和抗菌性能的影响
局部细菌感染对全球人类健康的威胁日益严重,而感染控制仍然是一项具有挑战性的任务。碳量子点(CQSs)和钨酸钡具有抗菌特性。通过水热法合成了掺杂钨酸钡(BaWO4)的碳量子点,并研究了它们对革兰氏阳性菌金黄色葡萄球菌的光学和抗菌活性以及光学特性。紫外-可见光谱显示,由于在 BaWO4 中掺入了 CQDs,带隙从 3.62 eV 变为 2.93 eV。通过 XRD 对 CQDs/BaWO4 的结构进行了研究,结果表明掺杂了 CQDs 的 BaWO4 样品具有四钴锰酸锂结构,XRD 确定其优先取向为(1 1 2),取向角为 26°,结晶尺寸为 31 nm。根据实验设计,BaWO4/CQD 纳米复合材料呈现球状,由 Ba、O、W 和 C 组成。通过 DLS 对 CQDs 进行 Zeta 定标,结果显示 CQDs 的尺寸为 7.65 nm。傅立叶变换红外光谱(FT-IR)显示,掺杂材料中存在 CC、CO 和 COOH 键等官能团,这表明 C 点被环氧基、羰基、羟基和羧酸基官能化。EDS 研究了它们的元素组成和表面形态,显示了 CQDs 在 BaWO4 中的百分比变化,SEM 结果显示了在 BaWO4 中添加 CQDs 后样品形状的变化。TEM 图像证明了 BaWO4 中存在掺杂材料。PL 光谱显示发射光谱向更高波长移动,吸收增加。定性分析显示了抗菌活性和抑制区的扩大,定量分析也证实了这一点。
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来源期刊
Journal of Saudi Chemical Society
Journal of Saudi Chemical Society CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
8.90
自引率
1.80%
发文量
120
审稿时长
38 days
期刊介绍: Journal of Saudi Chemical Society is an English language, peer-reviewed scholarly publication in the area of chemistry. Journal of Saudi Chemical Society publishes original papers, reviews and short reports on, but not limited to: •Inorganic chemistry •Physical chemistry •Organic chemistry •Analytical chemistry Journal of Saudi Chemical Society is the official publication of the Saudi Chemical Society and is published by King Saud University in collaboration with Elsevier and is edited by an international group of eminent researchers.
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