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Ultrasensitive Monitoring of Cyanide Concentrations in Water Using a Au core-Ag shell Hybrid-Coating-Based Fiber Optical Sensor

Authors
Phuong, Nguyen Tran TrucPhung, Viet-DucLe, Thu Bao NguyenChi, TranHien, Bui Thi ThuTho, Le HongMai, Ngoc Xuan DatPhan, Thang BachTran, Nhu Hoa ThiJu, Heongkyu
Issue Date
Oct-2023
Publisher
AMER CHEMICAL SOC
Citation
LANGMUIR, v.39, no.44, pp 15799 - 15807
Pages
9
Journal Title
LANGMUIR
Volume
39
Number
44
Start Page
15799
End Page
15807
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/89522
DOI
10.1021/acs.langmuir.3c02499
ISSN
0743-7463
1520-5827
Abstract
Cyanides, which are extremely toxic chemicals that are rapidly absorbed into the human body and interact with cytochrome oxidase, strongly inhibit cellular respiration to body death with convulsions. Cyanide ions that exist in many forms in nature such as those found in apricot kernels, cassava roots, and bamboo shoots as cyanogenic glycosides are inevitably used in various industries, including gold and silver mining as well as in dyes and plastic industries. In this study, for the sake of developing ultrahigh-sensitive sensors for cyanide monitoring in a simple manner, we chemically synthesize Au-core-Ag-shell hybrid nanomaterials of different core/shell thicknesses for colorimetric sensors and fiber optical sensors. Their sensing principle relies on the formation of the Ag/Au cyanocomplex upon cyanide injection. The generated metal cyanocomplex induced changes in refractive indices, causing changes in properties of localized surface plasmon resonance (LSPR), i.e., optical absorbance change for the colorimetric sensors. For fiber optical sensors, the hybrid metal nanoparticles were immobilized on the fiber core surface and the metal cyanocomplex formation induced changes in the fiber cladding refractive index, enabling quantitative cyanide detection with ultrahigh sensitivity. The LSPR-based colorimetric sensor provided the lowest detectable cyanide concentration of 5 x 10(-6) M, whereas the value for the fiber-based sensor was 8 x 10(-11) M.
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