Data source: AFM depth profile reported by the authors (depth reduced from β200 nm to β15 nm after streptavidin/SAM + probe/target hybridization) β interpreted as strong local occupancy of wells by hybrid complex but not proof of single-molecule capture per well.
Authors report quantitative detection over concentration range 1 pM β 1 Β΅M and state the limit of detection (LOD) is 1 pM on their device (EIS using Rct). The plot above is a schematic (raw Rct numerical values and errors were not provided in the text), used here to visualize the claimed dynamic range and LOD.
Citations: methodological details and claims taken from Cha et al. 2013. For context on nanowell sensitivity benefits, compare earlier ONW nanowell work (2006) that demonstrates nanoscale confinement can boost electrochemical sensitivity but also highlights scalability and real-sample challenges.
The paper provides a credible nanofabrication + surface-chemistry demonstration and orthogonal AFM + EIS signals that are consistent with probe-target hybridization. However, the analytical claims (LOD = 1 pM and wide dynamic range) are insufficiently supported in the text because numeric Rct values, replicate statistics, blank controls, and matrix-challenge data are missing; therefore the assertion that the device is ready for biological H5N1 detection (clinical specimens) is premature. Confidence in the core fabrication and measurement approach is moderate; confidence in the analytical performance claims in real samples is low without follow-up experiments.
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