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In spite of many advantages, the use of biomolecules-attached NWs sensing by photoelectrochemical (PEC) study is almost non-existent.
This hybrid photoanode system was subjected to photoelectrochemical (PEC) study under a light illumination intensity of 80 mW/cm2.
The aim of this work has been the photoelectrochemical (PEC) study of nanostructured photoanodes based on TiO2.
In this article, the PEC study of dye-attached single-stranded DNA on Au NWs and Au-Ni-Au multilayer NWs prepared by pulse electrodeposition are investigated.
The photoelectrochemical (PEC) study indicated that h-WO3 is active under visible-light region and the Bi2O3 incorporation further ameliorated its water splitting properties.
MC4R rs17782313 genotype data were not available for the PEC study (417 cases and 407 controls).
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There are only a few investigations about H-TiO2 films on conductive substrates which can be used as photoanodes for three-electrode photoelectrochemical (PEC) studies [3].
PEC studies showed that photocurrent densities of 8.2 μA cm−2 and 7.0 μA cm−2 were obtained under UV and visible-light illumination at a potential of 0.8 V.
In this study, PEC process was found more efficient among EC, PC and PEC processes in order to get maximum removal, minimum energy consumption and minimum operating cost.
PEC designed the study, analyzed the data and drafted the manuscript.
The interactions between nHA crystal and chitosan pectin PEC networks were studied using Fourier Transform Infrared Spectroscopy (FTIR) and Differential Scanning Calorimetry (DSC).
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