2014
DOI: 10.3390/chemosensors2040219
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Reproducible Design for the Optical Screening and Sensing of Hg(II) Ions

Abstract: We fabricated silica nanotubes with hexagonally ordered mesopores (6 nm) inside a membrane disc with a uniform channel neck size of 200 nm and a longitudinal thickness of 60 μm to design an optical sensor membrane (OSM) for the screening and sensing of extremely toxic Hg(II) ions. The optical detection and quantitative recognition of Hg(II) ions in water were conducted even at trace concentrations without the need for sophisticated instruments. The OSM design was based on the physical interaction of a responsi… Show more

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Cited by 15 publications
(5 citation statements)
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References 60 publications
(124 reference statements)
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“…This behavior is related to the microporous network formation. [44][45][46][47] Figure 2D shows the NLDFT-pore distribution of S-CNS-1 (violet line) and S-CNS-2 (green line), confirming the N2-adsorption data for the presence of microporous particles with pore size ranging from 1.5 nm to 2.2 nm. The surface areas (SBET) of S-CNS-1 and S-CNS-2 are 612 and 164 m 2 g -1 , respectively.…”
Section: Controlled Formation Of 3d Circular S-doped Carbon Spheroidal Surfacessupporting
confidence: 69%
See 1 more Smart Citation
“…This behavior is related to the microporous network formation. [44][45][46][47] Figure 2D shows the NLDFT-pore distribution of S-CNS-1 (violet line) and S-CNS-2 (green line), confirming the N2-adsorption data for the presence of microporous particles with pore size ranging from 1.5 nm to 2.2 nm. The surface areas (SBET) of S-CNS-1 and S-CNS-2 are 612 and 164 m 2 g -1 , respectively.…”
Section: Controlled Formation Of 3d Circular S-doped Carbon Spheroidal Surfacessupporting
confidence: 69%
“…The N 2 adsorption behavior displays a typical type I isotherm, in which a sharp uptake at low P / P 0 ( P / P 0 = 0.02) and high uptake at a high relative pressure ( P / P 0 > 0.9) were observed. This behavior is related to the formation of a microporous network. Figure D shows the pore size distribution curves of S-CSN materials that are determined by using nonlocal density functional theory (NLDFT)-pore distribution of S-CNS-1 (violet line) and S-CNS-2 (green line), confirming the presence of microporous particles with pore sizes ranging from 1.5 to 2.2 nm. The surface areas ( S BET ) of S-CNS-1 and S-CNS-2 are 612 and 164 m 2 g –1 , respectively.…”
Section: Results and Discussionmentioning
confidence: 75%
“…Such results demonstrate that the immobilization of Hb onto the Ni foam electrode is a promising non-enzymatic H2O2 sensor. The specific utility of this sensor design was interesting for its application as molecular and ion species sensing tools in environmental samples and physiological fluids [47][48][49][50][51].…”
Section: Discussionmentioning
confidence: 99%
“…Limit of detection (LOD) for the developed sensor was calculated with the formula LOD = (k * sb)/m, where k = 2 for 92.1 confident level, sb is standard deviation of blank, and m is the slope of the linear response curve [ 35 ].…”
Section: Methodsmentioning
confidence: 99%