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Cu oxide nanowire array on Si-based SiO2 nanoscale islands was fabricated via nanochannels of Si-based porous anodic alumina (PAA) template at room temperature under a pulse voltage in a conventional solution for copper electrodeposition.
For example, Yu et al. synthesized 3D V6O13 nanotextiles assembled from interconnected nanogrooves via a facile solution-redox-based self-assembly route with MnO2 template at room temperature.
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The carbon supported Pt hollow nanospheres were prepared by employing cobalt nanoparticles as sacrificial templates at room temperature in aqueous solution and used as the anode electrocatalyst for direct borohydride-hydrogen peroxide fuel cell (DBHFC).
In summary, we obtained highly ordered free standing patterns of metal nanowire and polymer nanotube arrays with secondary templates at room temperature.
Inspired by the work of Shao et al., herein, we report a one-pot green process to synthesize noble metal clusters (Au and Pt) with different luminescences by using chicken egg white as templates at room temperature in aqueous solution.
Nickel, Cobalt, and Ni x Co1−x (0≤x≤1) CNW networks were grown by electrodeposition into interconnected pore PC templates at room temperature in the potentiostatic mode using a Ag/AgCl reference electrode and a Pt counter electrode.
Here, a novel electrochemical technique was proposed, in which graphene oxides can be simultaneously deposited and reduced on a template wire at room temperature.
Ordered poly 9,9-dioctylfluorene) nanopoly 9,9-dioctylfluorenephology were obtainanopillarsicating from nanoporous alumina via template withing at room temperature.
The background noise observed in the XRD pattern originates from the amorphous nature of AAO [34]. Figure 7 shows the typical hysteresis loop of Co-Ni binary nanowires [Co II)/Ni II) = 80 20] embedded in the AAO template measured at room temperature at magnetic field of ±10 kOe applied both parallel and perpendicular to the nanowire axis.
We have successfully synthesized hollow porous Cu2O microspheres with high purity by using a soft-template method at room temperature.
Cu2O p-type semiconductor hollow porous microspheres have been prepared by using a simple soft-template method at room temperature.
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