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It was indicated that the low hydrogen pressure was unfavorable to the hydrogenation of THN.
At optimal conditions, complete hydrogenation of acetophenone was achieved at atmospheric hydrogen pressure.
The optimal hydrogen pressure is 1.5 MPa.
Again, we observe that the equilibrium hydrogen pressure increases with the Zr concentration.
The reaction conditions including temperature and hydrogen pressure were optimized.
Figure 5 shows the colors observed in a Y99Zr1 Y92Zr8 gradient thin film as a function of hydrogen pressure.
The measurements were done at room temperature while the hydrogen pressure ranged from 0.01 to 10,000 mbar.
NaAlH4 was mechanochemically synthesized under high hydrogen pressure.
The hydrogen pressure equivalent to hydrogen overpotential was then evaluated.
A correlation between hydrogen pressure and sample properties or structure was investigated by varying hydrogen pressure from 5 to 532 Pa.
Possibly, part of the tilt evolves because the hydrogen pressure is increased logarithmically from 1 to 104 mbar, resulting in a higher step size at higher pressures.
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