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Ni/Mg/Al/Ce mixed oxides were synthesized by thermal decomposition of layered double hydroxide-type compounds, which were obtained by the coprecipitation method at constant pH.
The NiO La2O3 MgO/Al2O3 catalyst precursor was prepared using coprecipitation method at constant pH.
The ZnFeBONP were synthesized according to a co-precipitation method at constant temp 60 °C with stirring.
These hydrotalcite-like compounds, with Zn and Al in the layers and chloride in the interlayer space, were prepared following the coprecipitation method at constant pH.
ZnFeBONP were synthesized according to a co-precipitation method at constant temp 60 °C with stirring an average size distribution of 37.72 nm and utilized it as an efficient adsorbent for removing of Congo red from wastewater samples.
This instrument uses the non-stationary hot-wire method at constant heat flow and operates in the temperature range from − 10 to + 200 °C with precision and reproducibility in the order of 2%.
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The thermal conductivity of the suspensions was measured using the transient hot-wire method at a constant temperature.
The conventional Pd nanoparticles deposited on ITO were prepared by the potentiostatic method at a constant applied potential of -0.2 V in the solution as stated above.
Zn-Al LDHs with carbonate as the interlayer anion, with [Zn]:[Al] = 1 2 were synthesized by co-precipitation method at a constant pH similar to [9].
The electrochemical stability of these catalysts was further tested by polarizing the electrode, using chrono-potentiometric method, at a constant applied potential of 1.7 V as shown in Fig. 5c.
The average size less than 5 nm. Figure 2a shows the top-view SEM image of the PSi formed using pulsed current method at a constant peak current density of 10 mA/cm2 with cycle time, Tall 14 ms and pulse time, Toff 4 ms. A uniform pore distribution is observed with estimated sizes around 2 ± 1 μm.
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