PDMS based photonic lab-on-a-chip for the selective optical detection of heavy metal ions
文献情報
Bergoi Ibarlucea, César Díez-Gil, Inma Ratera, Jaume Veciana, Antonio Caballero, Fabiola Zapata, Alberto Tárraga, Pedro Molina, Stephanie Demming, Stephanus Büttgenbach, César Fernández-Sánchez
The selective absorbance detection of mercury(II) (Hg2+) and lead(II) (Pb2+) ions using ferrocene-based colorimetric ligands and miniaturized multiple internal reflection (MIR) systems implemented in a low-cost photonic lab on a chip (PhLoC) is reported. The detection principle is based on the formation of selective stable complexes between the heavy metal ion and the corresponding ligand. This interaction modulates the ligand spectrum by giving rise to new absorbance bands or wavelength shifting of the existing ones. A comparative study for the detection of Hg2+ was carried out with two MIR-based PhLoC systems showing optical path lengths (OPLs) of 0.64 cm and 1.42 cm as well as a standard cuvette (1.00 cm OPL). Acetonitrile solutions containing the corresponding ligand and increasing concentrations of the heavy metal ion were pumped inside the systems and the absorbance in the visible region of the spectra was recorded. The optical behaviour of all the tested systems followed the expected Beer–Lambert law. Thus, the best results were achieved with the one with the longest OPL, which showed a linear behaviour in a concentration range of 1 μM–90 μM Hg2+, a sensitivity of 5.6 × 10−3 A.U. μM−1 and a LOD of 2.59 μM (0.49 ppm), this being 1.7 times lower than that recorded with a standard cuvette, and using a sample/reagent volume around 190 times smaller. This microsystem was also applied for the detection of Pb2+ and a linear behaviour in a concentration range of 3–100 μM was obtained, and a sensitivity of 9.59 × 10−4 A.U. μM−1 and a LOD of 4.19 μM (0.868 ppm) were achieved. Such a simple analytical tool could be implemented in portable instruments for automatic in-field measurements and, considering the minute sample and reagent volume required, would enable the deployment of high throughput environmental analysis of these pollutants and other related hazardous species.
関連文献
Synthesis of nitrogen-doped carbon nanoboxes with pore structure derived from zeolite and their excellent performance in capacitive deionization
Keyang Li, Shaoqing Zhu, Shunan Zhao, Ming Gong, Jianning Gan, Yilun Huang, Ming Zhao, Daming Zhuang, Qianming Gong
DOI: 10.1039/D3TA06096A
A cooperative effect of copper-induction and AIE leading to bright luminescence of gold nanoclusters
Yongjie Zhang, Luyao Feng, Jingyan Luan, Guomei Zhang, Ning Sheng, Jinglin Shen
DOI: 10.1039/D3QI01974H
Directional freezing-induced self-poled piezoelectric nylon 11 aerogels as high-performance mechanical energy harvesters
DOI: 10.1039/D3TA05911A
Electronic modulation of iridium single atomic sites on NiCr layered double hydroxide for an improved electrocatalytic oxygen evolution reaction
Swayamprakash Biswal, Divya, Biswajit Mishra, Darius Pohl, Bernd Rellinghaus, Bijay P. Tripathi
DOI: 10.1039/D3TA05848D
Conductive metal–organic frameworks for zinc–air battery application: design principles, recent trends and prospects
Bandhana Devi, Sreekumar Kurungot
DOI: 10.1039/D3TA03753C
Orientational order/disorder and network flexibility in deuterated methylammonium lead iodide perovskite by neutron total scattering
Jiaxun Liu, Juan Du, Peter B. Wyatt, David A. Keen, Anthony E. Phillips
DOI: 10.1039/D3TA04586B
Unveiling the electrocatalytic potential of main-group metal-doped blue phosphorene for oxygen and hydrogen evolution reactions through a computational study
Hao Hu, Yang-Chun Yong, Peng Zhang, Wei Tang, Bei-Bei Xiao, Jian-Li Mi
DOI: 10.1039/D3TA06117E
こちらもおすすめ
2,3-スチオエポキシマドルを取り扱う際の実験室安全事項は何ですか?
取り扱いにはPPE(プロテクティブ・パーソナル・エイド)が必要で、防ぐ手袋と保護眼鏡を着用してください。ドラフトチャンバーの使用を推奨します。漏洩した場合は、適...
BOC-S-3-アミニ-4-(4-メチオキシベンチル)-ブタン酸の代替品はありますか?
この化合物の代替品としては、BOC保護基を有さないアミノ酸やその他の保護基化合物が考えられます。また、メチオキシ基を有しない他の芳香族アミノ酸も代替品として挙げ...
Methyl 2-(chloromethyl)-3-nitrobenzoate(1218910-61-2)の代替品はありますか?
Methyl 2-(chloromethyl)-3-nitrobenzoate(1218910-61-2)の代替品としては、化学組成を変えることで効果を達成する...
(2R)-2-アミノ-N-ベンジル-3-ヒドロキシプロパナミドを含む廃棄物はどのように処理すべきですか?
(2R)-2-アミノ-N-ベンジル-3-ヒドロキシプロパナミドを含む廃棄物は、適切な廃棄物管理ガイドラインに基づき処理する必要があります。まず、廃棄物を適切に収...
6,7-二氢-咪唑並[1,2-a]ピリドイン-8(5h)-酮はどのように合成されますか?
6,7-二氢-咪唑並[1,2-a]ピリドイン-8(5h)-酮は、2-ブロモフェニルアセトインとリン酸ハロゲン化物を反応させることで合成できます。この反応は高温で...
エチル(3R)-3-ピロリジニル酢酸水和塩とは何ですか?
エチル(3R)-3-ピロリジニル酢酸水和塩は、CAS番号1332459-32-1の化合物で、(R)-乙基2-(ピロリジン-3-基)酢酸塩水和塩と呼ばれます。この...
(2S)-{[(2-メチルエチルオキシ]カルボニル}アミノ)[2-(トリアフルオロメチルフェニル]エチカシック酸の物理化学的性質は何ですか?
(2S)-{[(2-メチルエチルオキシ]カルボニル}アミノ)[2-(トリアフルオロメチルフェニル]エチカシック酸のCAS番号は1203454-45-8です。この...
2-ブロモ-1-(2-メチル-2-プロパニル)-4-ニトロベンゼンはどのように保存すればよいですか?
2-ブロモ-1-(2-メチル-2-プロパニル)-4-ニトロベンゼンは、直射日光を避けて暗所で、室温(約15℃〜25℃)、乾燥した場所に保存する必要があります。ま...
1-[(4-硝基フェニル)スルホニル]-1H-1,2,4-三唑の市場動向や研究トレンドはどうですか?
市場動向としては、1-[(4-硝基フェニル)スルホニル]-1H-1,2,4-三唑は主に農業用除草剤や合成化学製品の原料として利用されています。研究トレンドとして...
掲載誌
Analyst

Analyst publishes analytical and bioanalytical research that reports premier fundamental discoveries and inventions, and the applications of those discoveries, unconfined by traditional discipline barriers.













![2-Bromodibenzo[b,d]furan structure 2-Bromodibenzo[b,d]furan structure](https://static.chemtradehub.com/structs/86-/86-76-0-1814.webp)
