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The maximal open circuit potential of the biofuel cell was 240 mV.
If ethanol was applied as an energy source the maximal open circuit potential of the biofuel cell was −125 mV.
The maximal open circuit potential generated by QH-ADH immobilized on carbon rod electrode was −115 mV versus an inactivated QH-ADH-modified electrode (Inactiv-ADH/carbon).
The maximal open circuit potential (270 mV) was achieved in the presence of extent concentration (over 2 mM) of both substrates (ethanol and glucose).
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The maximal values of open circuit voltage (OCV) and peak of power density (PPD) of unmetalized electrodes, 0.4 V and 30 μW/cm2 respectively, were found to be for composite cPAN/CNT electrode.
The maximal registered open-circuit-voltage of the complete E-BFC exceeded 640 mV, calculated maximal power density was 4.2 μW cm−2 at the cell voltage of 530 mV in the presence of 200 mmol L−1 or higher glucose and 0.1 0.5 mmol L−1 of hydrogen peroxide concentration in anode and cathode compartment, respectively.
At the "ON" state, the open circuit voltage (Ecellocv) and maximal power output density (Pmax) could reach to 0.70 V and 20.52 μW cm−2, respectively; while at the "OFF" state, the Ecellocv and Pmax were only 0.30 V and 3.28 μW cm−2 correspondingly.
This systematic review aimed to (i) report the accuracy of submaximal exercise-based predictive equations that incorporate oxygen uptake (measured via open circuit spirometry) to predict maximal oxygen uptake (˙VO2max) and (ii) provide a critical reflection of the data to inform health professionals and researchers when selecting a prediction equation.
Oxygen consumption was measured using on-line, computer-assisted, open circuit spirometry during submaximal and maximal (VO2max) exercise workloads.
An MFC inoculated with strain HJ and operated in open circuit produced 47%and57%7% of the maximal power produced from MFCs inoculated with the known electrogen Geobacter daltonii and the magnetotactic bacterium Desulfamplus magnetomortis, respectively.
This ceramic material is used as an electrolyte for the fabrication an electrochemical cell designed as NiO BCZYYb|BCZYYb (25 μm)|NBFC (where NBFC = Nd0.5Ba0.5Fe1.9Cu0.1O3 δ), which demonstrates as maximal power density as 140 and 290 mW cm−2 at 600 and 700 °C with open circuit voltages higher than 1.01 1.04 V, respectively.
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