2020
DOI: 10.1016/j.snb.2020.128494
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Plasmonic/magnetic molybdenum trioxide and graphitic carbon nitride quantum dots-based fluoroimmunosensing system for influenza virus

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Cited by 51 publications
(28 citation statements)
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“…Recently, similar detection based on other 2D materials was reported. For instance, a magnetic/ plasmonic-assisted fluoroimmunosensor platform was developed by Achadu et al [112] for the detection of influenza A virus. The fluorescent g-C 3 N 4 quantum dots (QDs) were functionalized with specific antibodies against influenza A virus as the fluorescent probe and further conjugated with magnetic-derivatized plasmonic MoO 3 .…”
Section: Fluorescence Detection Of Virusmentioning
confidence: 99%
“…Recently, similar detection based on other 2D materials was reported. For instance, a magnetic/ plasmonic-assisted fluoroimmunosensor platform was developed by Achadu et al [112] for the detection of influenza A virus. The fluorescent g-C 3 N 4 quantum dots (QDs) were functionalized with specific antibodies against influenza A virus as the fluorescent probe and further conjugated with magnetic-derivatized plasmonic MoO 3 .…”
Section: Fluorescence Detection Of Virusmentioning
confidence: 99%
“…A specific antibody towards the influenza A virus was coupled onto the surface of the MP-MoO 3 QDs and gCNQDs in respective order. When influenza A virus is present, a core-satellite immunocomplex forms between the antibody-coupled nanomaterials and their interplay modulates which enhances gradually the fluorescence strength of the detecting probe with an elevation depending on the influenza virus concentrations [ 102 ]. A photoelectrochemical immunosensor with sensitivity and specificity was manufactured to analyze subgroup J avian leukosis viruses (ALV-J) according to a dual signal-on approach ( Fig.…”
Section: Application Of Carbon Nanomaterials For Viral Diagnosismentioning
confidence: 99%
“…To detect the virus, Achadu and co‐workers developed a novel magnetic/plasmonic‐assisted fluoro‐immunoassay system for the trace level detection of influenza‐A virus by utilizing magnetic‐derivatized plasmonic molybdenum trioxide quantum dots (MP‐MoO 3 QDs) as the plasmonic/magnetic agent and fluorescent graphitic carbon nitride quantum dots (gCNQDs) as the monitoring probe (Figure 12A‐D). [ 131 ] While doing this, they first conjugated the anti‐influenza‐A antibody onto the surface of MP‐MoO 3 QDs and gCNQDs, respectively (Figure 12A,B). When the influenza‐A virus is present in the solution, a core‐satellite immune‐complex is formed (Ab‐MP‐MoO 3 QDs and Ab‐gCNQDs), and their interaction resulted in the gradual enhancement of the FL intensity of the detection probe (Figure 12C,D).…”
Section: Applications Of G‐c3n4 In Signal‐transducing Agent For Sensomentioning
confidence: 99%
“…Reproduced with permission. [ 131 ] Copyright, 2020 Elsevier. E, Schematic diagram of the synthesis process for WS‐GCN@AuNCs.…”
Section: Applications Of G‐c3n4 In Signal‐transducing Agent For Sensomentioning
confidence: 99%