Department of Medical Physics, CEG Campus, Anna University, Chennai, 600 025, India.
Department of Medical Physics, CEG Campus, Anna University, Chennai, 600 025, India.
Environ Pollut. 2021 Jan 15;269:116172. doi: 10.1016/j.envpol.2020.116172. Epub 2020 Nov 26.
The removal of halogenated dye and sensing of pharmaceutical products in the water bodies with quick purification time is of high need due to the scarcity of drinking water. The present work reported on the preparation of graphitic carbon nitride (g-CN) for quick time water contaminant adsorption, followed by synthesizing silver nanoparticles decorated graphitic carbon nitride for pharmaceutical product sensing using in-situ SERS technique. The prepared graphitic carbon nitride is used to study the adsorption behavior of water contaminants at room temperature, in the presence of methylene blue (MB) as an adsorbate model. The water-soluble graphitic carbon nitride, even at low concentration, possesses an excellent ability to adsorb halogenated organic dye. As a result, the dyes are found to adsorb within ∼5s even without any additional physical or chemical activation. From the UV-Vis absorption investigations, it has been perceived that in the presence of graphitic carbon nitride (g-CN) the dye adsorption efficacy is observed nearly 80% with the well fitted linearly of R = 0.9731. Effective in-situ surface-enhanced Raman scattering (SERS) studies for Ag nanoparticles decorated graphitic carbon nitride has been carried out and the obtained result shows good sensing performance of the material towards acetaminophen drug. This method opens the possibility of the Nobel metal decorated graphitic carbon nitride for real-time sensing of SERS-based drug products along with the development of high-performance sensing of the target analyte in the future.
由于饮用水短缺,需要快速净化时间来去除水体中的卤化染料和检测药物产品。本工作报道了制备石墨相氮化碳(g-CN)用于快速时间水污染物吸附,然后通过原位 SERS 技术合成银纳米粒子修饰的石墨相氮化碳用于药物产品传感。所制备的石墨相氮化碳用于在室温下研究水污染物的吸附行为,以亚甲基蓝(MB)作为吸附剂模型。即使在低浓度下,水溶性石墨相氮化碳也具有极好的吸附卤代有机染料的能力。结果表明,即使没有任何额外的物理或化学激活,染料也能在大约 5s 内被吸附。从紫外-可见吸收研究中可以看出,在存在石墨相氮化碳(g-CN)的情况下,染料的吸附效率接近 80%,拟合线性度 R=0.9731。对 Ag 纳米粒子修饰的石墨相氮化碳进行了有效的原位表面增强拉曼散射(SERS)研究,得到的结果表明,该材料对乙酰氨基酚药物具有良好的传感性能。该方法为基于 SERS 的药物产品的实时传感以及未来目标分析物的高性能传感开辟了可能。