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To achieve excellent CDI performance, a rational design of the structure of the electrode material is essential.
The structure of the electrode was observed by scanning electron microscopy (SEM).
This kind of preparation allows varying the composition and/or the structure of the electrode.
The surface morphology and electronic structure of the electrode material are characterized using transmission electron microscopy (TEM), scanning electron microscope (SEM), and Fourier transform infrared (FTIR) spectroscopy.
This phase is able to absorb large amounts of hydrogen, thereby changing the electronic structure of the electrode material.
SEM images show that the structure of the electrode surface (and of the interphase) is grain-like.
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For this reason, comprehensive analysis is very important to optimize the structure of the electrode-support to maximize the overall efficiency of a RSOFC performing dual functions.
The unique structure of the electrodes results in excellent mechanical and electrochemical performances.
The anisotropic structure of the electrodes does not appear as a complexity in what concerns the theoretical description of the electrodes.
This all solution-processing method enables the structure of the electrodes to be tuned by inducing continuous or nanoporous wrinkled surfaces.
Various techniques such as impregnation, permeation, porosimetry, SEM observations and impedance spectroscopy were used to characterise the structure of the electrodes.
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