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This study proposes a multicomponent system for hydrogen storage. An electrochemical evaluation was used as a simple and accurate technique to assess the storage capacity. A porous silicon substrate was fabricated using an electrochemical anodization process and decorated with palladium nanoparticles using the electroless method. The hybrid substrate underwent chemical vapor deposition for 45 min...
In this study, the hydrogen storage of porous silicon-based systems is considered. In this regard, the electrochemical anodization process was employed to introduce porous structure over silicon wafer. Moreover, the Pd nanoparticles as great reservoirs of hydrogen species were deposited over porous silicon; using electroless technique. X-ray diffraction, Fourier transfer infrared, and Field emission...
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