基于玫瑰花瓣同手性纳米金(Au RHNs)为底物的高效SERS检测平台用于环境水样中塑料的灵敏检测。

Xiaoyu Yang, Shunbi Xie, Runzi Zhang, Yao Liu, Weifen Wu, Yi He
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引用次数: 0

摘要

过量的塑料消费会对人体呼吸和循环系统造成潜在风险,导致各种疾病。因此,塑料的灵敏检测对确保食品安全、环境保护和人类健康具有重要意义。对河流和饮用水进行检测可以确保它们符合相关的安全标准,从而减轻与塑料污染有关的潜在环境和健康风险。在本实验中,我们制备了玫瑰花瓣的同手性纳米金(Au RHNs)作为表面增强拉曼散射(SERS)衬底,用于检测水中的塑料。Au RHNs的平均增强因子(EF)为8.4696 × 105,由于其具有复杂的玫瑰花瓣状表面和对称性破缺的结构,使得其表面积较大。采用Au RHNs作为SERS底物对塑料聚乙烯(PE)和聚氯乙烯(PVC)进行检测,检出限分别为0.0986 mg/mL和0.0975 mg/mL。此外,所制备的Au RHNs底物成功地应用于分析实际样品(自来水、矿泉水、河水),回收率令人满意。Au RHNs作为SERS检测底物的优异性能表明其在塑料样品的实际检测中具有广阔的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An efficient SERS detection platform based on roseate petal homochiral nanogold (Au RHNs) as substrate for sensitive detection of plastics in environmental water samples.

Excessive plastic consumption can pose potential risks to the human respiratory and circulatory systems, leading to various diseases. Therefore, the sensitive detection of plastics holds significant implications for ensuring food safety, environmental protection, and human health. Conducting tests on rivers and drinking water can ensure their compliance with relevant safety standards, thereby mitigating the potential environmental and health risks associated with plastic pollution. In this experiment, we prepared a roseate petal homochiral nanogold (Au RHNs) as a surface-enhanced Raman scattering (SERS) substrate for detecting plastics in the water. Due to the intricate rose petal-like surface and structures with symmetry breaking, which result in a large surface area, the mean enhancement factor (EF) of the Au RHNs was determined to be 8.4696 × 105. The Au RHNs as the SERS substrate were used to test the plastic polyethylene (PE) and polyvinyl chloride (PVC), with the detection limits of 0.0986 mg/mL and 0.0975 mg/mL, respectively. Moreover, the prepared Au RHNs substrate were successfully applied for ananlyzing analyze actual samples (tap water, mineral water, river water), yielding a satisfactory recovery rate. The exceptional performance of Au RHNs as a SERS detection substrate indicated its promising potential for practical detection of plastic samples.

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