Department of Polymer Engineering, Pukyong National University, 45 Yongso-ro, Nam-gu, Busan 48513, Republic of Korea.
Display Research Center, Korea Electronics Technology Institute, 25, Saenari-ro, Bundang-gu, Seoungnam-si, Kyounggi-do 13509, Republic of Korea.
Spectrochim Acta A Mol Biomol Spectrosc. 2023 Sep 5;297:122750. doi: 10.1016/j.saa.2023.122750. Epub 2023 Apr 21.
Cu(II) ions are one of the essential mineral elements in the human body, but can pose a substantial health risk to people exposed to high concentrations of Cu(II) ions over a long period. Therefore, the ability to detect Cu(II) ions in drinking water is important. In this study, a novel colorimetric sensing probe for the easy and onsite detection of Cu(II) ions in drinking water was developed. The probe was constructed through selective chemical etching of triangular Ag nanoplates with tunable localized surface plasmon resonance (LSPR) properties. Ethylenediamine (EDA) was used as an organic capping agent to improve the chemical stability of triangular Ag nanoplates. Selective chemical etching of the EDA-capped Ag nanoplates in the presence of Cu(II) ions as a result of the formation of a coordination complex between the EDA and Cu(II) ions caused remarkable changes in the nanoplates' LSPR characteristics. On the basis of this phenomenon, a novel colorimetric sensing probe capable of detecting Cu(II) ions in drinking water at concentrations above the safety limit was developed. Our findings were also extended to develop a portable and paper-based sensing probe with good long-term stability to overcome the shortcomings of liquid-phase colorimetric sensors without requiring a spectrometer. The proposed colorimetric sensing probes provide accurate results even with a real sample and offer numerous advantages over conventional sensing platforms, including clearly distinguishable color changes that can be observed by the naked eye; thus, the proposed probes can be used for the selective, reliable, and low-cost point-of-care detection of Cu(II) ions in water.
铜(II)离子是人体必需的矿物质元素之一,但长期暴露于高浓度铜(II)离子环境中的人会面临严重的健康风险。因此,能够检测饮用水中的铜(II)离子是很重要的。在本研究中,开发了一种用于在饮用水中现场检测 Cu(II)离子的新型比色传感探针。该探针是通过具有可调谐局域表面等离子体共振(LSPR)性质的三角形 Ag 纳米板的选择性化学蚀刻构建的。乙二胺(EDA)用作有机封端剂,以提高三角形 Ag 纳米板的化学稳定性。由于 EDA 和 Cu(II) 离子之间形成配位络合物,在存在 Cu(II)离子的情况下,EDA 封端的 Ag 纳米板被选择性化学蚀刻,导致纳米板的 LSPR 特性发生显著变化。基于这一现象,开发了一种新型比色传感探针,能够检测饮用水中超过安全限量的 Cu(II)离子。我们的发现还扩展到开发了一种具有良好长期稳定性的便携式和基于纸张的传感探针,以克服无需使用光谱仪的液相比色传感器的缺点。所提出的比色传感探针即使在实际样品中也能提供准确的结果,并且与传统传感平台相比具有许多优势,包括可以通过肉眼观察到明显可区分的颜色变化;因此,所提出的探针可用于在水中选择性、可靠和低成本的现场检测 Cu(II)离子。