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R01 OH011023/OH/NIOSH CDC HHSUnited States/
  • The need for non or minimallyinvasive biomonitoring strategies and the development of pharmacokineticpharmacodynamic models for quantification
    The need for non- or minimally-invasive biomonitoring strategies and the development of pharmacokinetic/pharmacodynamic models for quantification
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  • NanozymeMediated Dual Immunoassay Integrated with Smartphone for Use in Simultaneous Detection of Pathogens
    Nanozyme-Mediated Dual Immunoassay Integrated with Smartphone for Use in Simultaneous Detection of Pathogens
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  • Aptasensor based on fluorophorequencher nanopair and smartphone spectrum reader for onsite quantification of multipesticides
    Aptasensor based on fluorophore-quencher nano-pair and smartphone spectrum reader for on-site quantification of multi-pesticides
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  • SmartphoneBased DualChannel Immunochromatographic Test Strip with Polymer Quantum Dot Labels for Simultaneous Detection of Cypermethrin and 3Phenoxybenzoic Acid
    Smartphone-Based Dual-Channel Immunochromatographic Test Strip with Polymer Quantum Dot Labels for Simultaneous Detection of Cypermethrin and 3-Phenoxybenzoic Acid
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  • Unprecedented peroxidasemimicking activity of singleatom nanozyme with atomically dispersed FeNx moieties hosted by MOF derived porous carbon
    Unprecedented peroxidase-mimicking activity of single-atom nanozyme with atomically dispersed Fe–Nx moieties hosted by MOF derived porous carbon
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  • Translating nanoparticle dosimetry from conventional in vitro systems to occupational inhalation exposures
    Translating nanoparticle dosimetry from conventional in vitro systems to occupational inhalation exposures
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  • PeroxidaseLike Activity
    Peroxidase-Like Activity
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  • DualReadout Immunochromatographic Assay by Utilizing MnO2 Nanoflowers as the Unique ColorimetricChemiluminescent Probe
    Dual-Readout Immunochromatographic Assay by Utilizing MnO2 Nanoflowers as the Unique Colorimetric/Chemiluminescent Probe
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  • A 3DPrinted Portable OpticalSensing Platform for Smartphones Capable of Detecting the Herbicide 24Dichlorophenoxyacetic Acid
    A 3D-Printed, Portable, Optical-Sensing Platform for Smartphones Capable of Detecting the Herbicide 2,4-Dichlorophenoxyacetic Acid
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