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通过弯月面限制3D打印工程化金-银合金纳米颗粒中的热点用于微塑料检测

Engineering the Hot-Spots in Au-Ag Alloy Nanoparticles through Meniscus-Confined 3D Printing for Microplastic Detection.

作者信息

Singh Netrapal, Goswami Manoj, Sathish Natarajan, Kumar Surender

机构信息

Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, India.

CSIR-Advanced Materials and Processes Research Institute (AMPRI), Bhopal 462026, India.

出版信息

ACS Appl Mater Interfaces. 2024 Aug 28;16(34):44830-44840. doi: 10.1021/acsami.4c08437. Epub 2024 Aug 19.

Abstract

The escalating concern surrounding microplastic (MP) pollution necessitates urgent attention and the development of rapid techniques for quantifying extremely low concentrations. Surface-enhanced Raman spectroscopy (SERS) has emerged as a promising method due to its simplicity, high sensitivity, and rapid quantification capabilities. Herein, the efficacy of gold-silver alloy nanoparticles (3DPAu-Ag) substrates for detecting poly(methyl methacrylate) (PMMA) and polystyrene (PS) MPs is investigated. The 3DPAu-Ag SERS substrates are fabricated using the meniscus-confined electrochemical 3D printing (MC-E3DP) process, employing a nozzle of 0.8 mm size with 2.5 V potential at a printing speed of 0.4 mm s. The proposed SERS substrates exhibit exceptional sensitivity and are capable of detecting PMMA concentrations as low as 0.2 μg mL and PS concentrations of 1.2 μg mL within the ranges of 1-10 μg mL and 10-10 μg mL, respectively. Remarkable enhancement factors (EFs) of up to 3.2 × 10 for PMMA and 9.3 × 10 for PS are achieved, underscoring the substrates' effectiveness. Furthermore, the investigation demonstrates outstanding uniformity and reproducibility of the 3DPAu-Ag substrates, with relative standard deviation (RSD) values of only 4.1 and 6.4%, respectively, across 31 and 5 measurements. Additionally, a minimal 17% decrease in the initial SERS signal value after 5 weeks highlights the substrates' high stability. This not only highlights the superior quality of the substrates but also positions them ahead of previously reported works in the literature. Moreover, this study also comes up with a plausible mechanism for MPs SERS detection facilitated by the 3DPAu-Ag substrates, offering insights into the underlying processes. Overall, 3DPAu-Ag substrates show promise for sensitive, stable MP detection, which is crucial for environmental monitoring.

摘要

围绕微塑料(MP)污染的担忧日益加剧,这需要紧急关注并开发用于量化极低浓度的快速技术。表面增强拉曼光谱(SERS)因其简单性、高灵敏度和快速定量能力而成为一种很有前景的方法。在此,研究了金银合金纳米颗粒(3DPAu-Ag)基底用于检测聚甲基丙烯酸甲酯(PMMA)和聚苯乙烯(PS)微塑料的效能。3DPAu-Ag SERS基底采用弯月面限制电化学3D打印(MC-E3DP)工艺制备,使用0.8毫米尺寸的喷嘴,在2.5伏电位下以0.4毫米/秒的打印速度进行打印。所提出的SERS基底表现出卓越的灵敏度,能够分别在1 - 10微克/毫升和10 - 100微克/毫升范围内检测低至0.2微克/毫升的PMMA浓度和1.2微克/毫升的PS浓度。对于PMMA和PS分别实现了高达3.2×10⁶和9.3×10⁶的显著增强因子(EFs),突出了基底的有效性。此外,研究表明3DPAu-Ag基底具有出色的均匀性和可重复性,在31次和5次测量中,相对标准偏差(RSD)值分别仅为4.1%和6.4%。此外,5周后初始SERS信号值仅最小降低17%,突出了基底的高稳定性。这不仅突出了基底的卓越品质,还使其在文献中领先于先前报道的工作。此外,本研究还提出了一种由3DPAu-Ag基底促进的微塑料SERS检测的合理机制,为潜在过程提供了见解。总体而言,3DPAu-Ag基底在灵敏、稳定的微塑料检测方面显示出前景,这对环境监测至关重要。

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