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The Pt/oxide-carbon materials showed higher ORR activity than Pt/C catalyst.
However, irrespective of K loading and reaction temperature, K Au/TiO2_r materials showed higher propanol selectivity than K Au/TiO2_a.
The graded materials showed higher shock-absorption efficiency compared with non-graded single materials with the same density.
The biphase materials showed higher catalytic activity than the solid solutions of Co in ceria phase, though this activity increased with Co content in CeO2 phase.
The solvothermally prepared materials showed higher specific surface areas (from ∼124 to ∼157 m2/g) than the commercial sample (∼20 m2/g).
Relative to Nafion, the SCS materials showed higher density of sulfonic acid groups and increased water retention capacity of the membrane.
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In addition, all materials showed high thermal stability.
The materials showed high surface functionalization (N- and O- groups) provided by the precursors.
In vitro biocompatibility studies of the new binary PHA materials showed high viability and proliferation of C2C12 myoblast cells.
The rest of the materials showed high migration energies (>6 eV) or errors arising from unreasonable structure inputs, lack of a potential parameter set, spurious evaluation of oxidation states, etc.
After Li2TiF6 surface modification, the coated OLO materials showed high rate capability as well as long cyclability and improved thermal stability.
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