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Autor(en) / Beteiligte
Titel
Solid-state ion recognition strategy using 2D hexagonal mesophase silica monolithic platform: a smart two-in-one approach for rapid and selective sensing of Cd.sup.2+ and Hg.sup.2+ ions
Ist Teil von
  • Mikrochimica acta (1966), 2020-07, Vol.187 (7)
Ort / Verlag
Springer
Erscheinungsjahr
2020
Link zum Volltext
Quelle
Alma/SFX Local Collection
Beschreibungen/Notizen
  • The possibility of a multifunctional and reversible solid-state colorimetric sensor is described for the identification and quantification of ultra-trace Cd.sup.2+ and Hg.sup.2+ ions, using a honeycomb-structured mesoporous silica monolith conjoined with an indigenous chromoionophoric probe, i.e., 4-hexyl-6-((5-mercapto-1,3,4-thiadiazol-2-yl)diazenyl)benzene-1,3-diol (HMTAR). The amphiphilic probe is characterized using NMR, FT-IR, HR-MS, and CHNS elemental analysis. The structural and surface properties of the monolithic template have been characterized using p-XRD, XPS, TEM-SAED, SEM-EDAX, FT-IR, TG-DTA, and N.sub.2 isotherm analysis. The unique structural features and distinct analytical properties of the solid-state sensor proffer a strong response in selectively signaling the target analytes. The probe (HMTAR) exhibits a 1:1 stoichiometric binding ratio with the target ions (Cd.sup.2+ & Hg.sup.2+), with a visual color change from pale orange to dark red for Cd.sup.2+ (525 nm, [lambda].sub.max), and to purple for Hg.sup.2+ (530 nm, [lambda].sub.max), respectively, in the pH range 7.0-8.0. The influence of various analytical criteria such as pH, temperature, response kinetics, critical probe concentration, sensor quantity, matrix tolerance, linear response range, reusability, the limit of detection (LOD), and quantification (LOQ) has been investigated to validate the sensor performance. The proposed method displays a linear signal response in the concentration range 5-100 [mu]g/L, with a LOD value of 2.67 and 2.90 [mu]g/L, for Cd.sup.2+ and Hg.sup.2+, respectively. The real-world efficacy of the sensor material has been tested with real and synthetic water samples with a significant recovery value of [greater than or equal to] 99.2%, to authenticate its data reliability and reproducibility (RSD [less than or equal to] 3.53%).
Sprache
Englisch
Identifikatoren
ISSN: 0026-3672
eISSN: 1436-5073
DOI: 10.1007/s00604-020-04363-y
Titel-ID: cdi_gale_infotracacademiconefile_A715056349
Format
Schlagworte
Sensors, Silica

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