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The result is consistent with the H2 evolution activity (see Fig. 4).
Further increasing the amount of Ni leads to a drop in the H2 evolution activity.
The system exhibits enhanced oxygen evolution activity when M dca)2 is introduced.
Addition of nonmetals such as B, C, and N to Ce TiO2 samples further enhanced hydrogen evolution activity.
We assessed the effectiveness of the human evolution activity described above in an introductory biology course on ecology and evolution.
When loaded Pt and then Ni or in reverse, an obvious reduction of H2 evolution activity is observed.
Consequently, it improves the charge separation efficiency and the catalytic H2 evolution activity of the Pd/MOF.
The obtained multijunction samples exhibit an obvious enhancement in photocatalytic H2 evolution activity in the presence of glycerol.
Thus, the as-prepared composite exhibits a markedly improved photocatalytic H2 evolution activity as well as considerable stability.
This hybrid material exhibits significantly enhanced photocatalytic H2 evolution activity (9-fold) compared with that of pristine g-C3N4.
Based on above results, the improved H2 evolution activity for the Eosin Y-sensitized g-C3N4/PtNi/GO-0.5 g-C3N4/PtNi/GO-0.5 g-C3N4/PtNi/GO-0.5ced charge separation efficiency.
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