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Complex 39 is highly active for ethylene polymerization at higher temperature (at 80 °C, the activity of this complex was 2760 kg PE mol cat −1 h−1), and narrow molecular weight distribution (2.0) indicates its single-site nature [26].
We have previously shown that an activated carbon-supported ruthenium catalyst promoted with ReOx (RuRe/AC) is highly active for the hydrodeoxygenation (HDO) of lignin-derived phenols (e.g., guaiacol).
The surface film has a nominal NiS stoichiometry and is highly active for ORR catalysis.
The catalyst after reduction in hydrogen at 300 °C is highly active for NO photodecomposition to N2 and N2O.
Soluble NdCl3·3EHOH (2-ethyl hexanol) in hexane combined with AlEt3 is highly active for isoprene polymerization in hexane.
Due to more number of active sites at low temperature, it is highly active for selective oxidation of benzyl alcohol to benzaldehyde (Fig. 11).
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Six new Ti(IV) complexes are presented which are highly active for the polymerisation.
They were also found to be highly active for ultra-deep desulfurization of gasoline and kerosene.
TiO2 P25 (70%anatase/30%% rutile) was found to be highly active for herbicide decomposition.
An ionically transported oxygen species over the Rh anode was highly active for the partial oxidation.
The results have shown that the ternary catalysts are highly active for electrocatalytic ORR.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com