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Herein, we report a shape-controlled preparation of Praseodymium hexacyanoferrate (PrHCF) using a simple electrochemical technique.
This unique super hydrophilic nanostructure was formed on the Ti surfaces in less than 1 h using a simple electrochemical anodization treatment.
Recently, we report the growth of Ga2O3 nanostructures directly on Si without any assistance of metal catalyzer by using a simple electrochemical deposition [28].
ZnO thin films have been deposited on SnO2 F coated transparent conducting oxide (TCO) glass substrates, using a simple electrochemical (galvanic) technique, from different electrolytic solutions.
Using a simple electrochemical reduction approach, we have produced three-dimensional (3D) graphene foam having high conductivity and well-defined macroporous structure.
To further improve the modified benefit of TiO2 nanotube (TN) arrays as an implant surface layer, Au nanoparticles (AuNPs) were uniformly loaded into TN arrays by using a simple electrochemical deposition method.
Similar(53)
ZnO/CdTe core shell nanotube arrays are controllablly synthesized using a simple two-step electrochemical deposition strategy in this paper.
ZnO nanorod arrays (NRAs) co-loaded with Au nanoparticles (NPs) and reduced graphene oxide (RGO) are fabricated using a simple one-step electrochemical deposition method.
In order to overcome the poor stability of polyaniline (PANI) and to improve the electrochemical performance based on graphene, MnO2 and PANI ternary composite, graphene/MnO2/PANI nanorod arrays (GMPNAs) were fabricated firstly via synthesizing highly ordered MnO2/PANI coaxial nanorod arrays on graphene film, using a simple and controllable electrochemical technique.
Herein, we prepared nano-sized Co3O4with high crystallinity using a simple citrate-gel method and used electrochemical impedance spectroscopy method to examine the origin for the drastic capacity fading observed in the nano-sized Co3O4anode system.
A flexible and bendable supercapacitor device was fabricated by using a simple and low-cost two-step electrochemical deposition of PPy and rGO on the surface of carbon bundle fibre and assembled into supercapacitor devices by using them to sandwich a solid-state electrolyte.
More suggestions(15)
using a simple geometrical
using a new electrochemical
using a simple analytic
using a detailed electrochemical
using a practical electrochemical
using a simple non-invasive
using a conventional electrochemical
using a simple one-click
using a sensitive electrochemical
using a simple thresholding
using a simple dip-pad
using a coulometric electrochemical
using a simple oversewing
using a simple online
using a simplified electrochemical
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Justyna Jupowicz-Kozak
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