2021
DOI: 10.1016/j.microc.2021.106845
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Modern microfluidic approaches for determination of ions

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Cited by 14 publications
(4 citation statements)
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“…In addition, since tears include many biomarkers, contact lens sensors can be used to directly measure different parameters such as glucose, urea, protein concentrations, ions [ 112 ], IOP, and corneal temperature, noninvasively. Microelectromechanical machining technology [ 113 ] enables contact lenses with detection electrodes and tiny structures to be used as wearable devices for biomarkers monitoring and delivery of drugs for treating eye diseases [ 114 ].…”
Section: In Vitro Biomechanical Study Methods Of Eye Tissuementioning
confidence: 99%
“…In addition, since tears include many biomarkers, contact lens sensors can be used to directly measure different parameters such as glucose, urea, protein concentrations, ions [ 112 ], IOP, and corneal temperature, noninvasively. Microelectromechanical machining technology [ 113 ] enables contact lenses with detection electrodes and tiny structures to be used as wearable devices for biomarkers monitoring and delivery of drugs for treating eye diseases [ 114 ].…”
Section: In Vitro Biomechanical Study Methods Of Eye Tissuementioning
confidence: 99%
“…In addition, recent investigations have also emphasized flow-based chemiluminescence (CL) assays involving microfluidic devices. 33,[50][51][52] When a molecule undergoes exothermic excitation to reach the singlet excited state, it emits CL characterized by electromagnetic radiation with a distinct wavelength, mainly falling within the visible and near-infrared range. The emitted light's intensity can be correlated with the concentration of the analyte.…”
Section: Detection Techniquesmentioning
confidence: 99%
“…The work in [ 171 ] showed that the flexible laminated graphene paper electrode was an economical and efficient alternative to glassy carbon and platinum-wire electrodes and showed that the performance of the flexible laminated graphene paper, K + selective solid-contact ISE, was comparable to the most advanced solid-contact ISE. Microfluidics, characterized by fluid manipulation in submillimeter channels/reactors, are of great concern in many areas such as polymer synthesis, fine chemical processing, and biomedicine [ 172 , 173 , 174 ]. The study in [ 175 ] introduced a new concept of solid reference electrodes integrated with microfluidic paper-based sampling and was successfully used for ion determination in environmental and clinically relevant samples.…”
Section: Prospection Of Crop Detection Applicationsmentioning
confidence: 99%