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Heterogeneous catalysts offer higher selectivity than homogeneous catalysts.
These results rationalize the observed higher selectivity toward propylene for PDH by Pt3Ti intermetallic NPs compared to pure Pt.
Interestingly, Ti rich samples exhibit higher selectivity toward hydrocarbons while Ce rich samples exhibit higher selectivity toward oxygenated products.
On the other hand, the less active foam catalyst leads to higher selectivity.
Lower temperature led to higher selectivity in 220 250 °C temperature range.
Gamma-Al2O3 and spent FCC catalysts show a higher selectivity of ethylene than that of propylene.
MIPs also showed a higher selectivity for acetamide than for benzamide and pivalamide.
The results revealed that the Pt Sn K catalyst showed higher selectivity than Pt Sn Li.
C101, one of these compounds, was demonstrated to block N-type Ca2+ channels with higher selectivity.
Compounds 8b, 8g, 9b d, and 9i demonstrated higher selectivity towards A375P compared with NIH3T3 fibroblasts.
Notably, due to electrical neutrality, the variant showed higher selectivity than the original sequence.
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