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The resultant EDLC device demonstrated a voltage window at about 1.2 V, sustaining a cycle-life over 2000 cycles.
The bullet-in-sheath device demonstrated a mean pullout of 280.84 N in the bone analog models and 419.47 N in the porcine bone models.
The device demonstrated a strong photovoltaic response under AM1.5 illumination of 80 mwith2 with an open circuit voltage of 0.704 V.
The device demonstrated a pseudo-linear response of concentration vs. time from 0.005 to 0.1 mmol/L with a slope of 67.48 μA/mmol L. It also showed high ion selectivity with detectable interfering species less than 1%, a high temporal resolution, and a reduced sampling time (as it required only 3μLL of fluid sample to complete a measurement).
The device demonstrated a sharp absorption in the light reflectance curve due not only to the insertion of polarized light where electric field was parallel to the reflection plane (P-wave) but to that perpendicular to the reflection plane (S-wave).
Additionally, the device demonstrated a low detection limit, calculated to be 2.16 × 10−6 µM (3 σ/m, and a wide linear range for the target DNA sequence being analyzed. The optimized electrochemical DNA biosensor was able to reach a lower quantitation limit (10 σ/m) of 7.2 × 10−6 µM for DPV than had previously been reported (Sha et al. 2016; Zhao et al. 2007).
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Owing to the small-sized Co3O4 and the SGP wrapping, the device demonstrated an excellent stability, remaining 93% of its initial capacitance even after 5000 charge/discharge cycles.
However, the donut-type voided slab with the merged-type fixing device demonstrated an asymmetric deflection distribution, which could be regarded as a typical behavior for two-way slab with asymmetric rebar arrangements.
Several recent studies using the comb device demonstrated an increase in terminal hairs and hair diameter.
The device demonstrates a peak brightness of 1950 cd/m2 and an external quantum efficiency of 0.1%%.
The device demonstrates a good cycle life with 88.2% capacitance retention after 10,000 cycles.
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