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In addition, the sample shows much improved rate capability at 20 C compared with pure Li4Ti5O12.
Specifically, the low filling ratio sample shows much better start-up characteristic, while the high filling ratio sample is quite outstanding at the high heat load.
Remarkably, the Ni1.5Co1.5O4 NWAs/CFC sample shows much higher catalytic activity, lower overpotential, better stability towards urea electro-oxidation compared to NiO synthesized by the similar procedure.
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After this surface treatment, the Al2O3-coated sample showed much better electrochemical performance than the bare sample.
The nonstoichiometric LaMn1.1O3 sample showed much higher specific capacity (202.1 mAhg−1/727.6 Cg−1 at 1 Ag−1) than stoichiometric LaMnO3 perovskite (114.4 mAhg−1/411.8 Cg−1 at 1 Ag−1).
Temperature dependent catalytic activity results revealed that at lower temperatures (<775 °C) the Cr-doped sample showed much higher activity while at higher temperatures (∼825 °C) the conversions levels were found to be similar on both the samples.
However, the coated sample showed much enhanced cyclic performance over the pristine sample.
First, when the target concentration was low, some probes in the case with cDNA sample showed much greater intensity than those in the case without cDNA sample.
Using the same eligibility criteria, the German sample showed much less room for improvement in daily functioning than the Dutch sample.
The linearity of the calibration curves obtained with and without agitation was comparable but the curve obtained with the agitation of the liquid sample showed much higher peak area values.
The 3DOM Eu2O3 and Sm2O3 samples showed much better UV-light absorption capacity than their bulk counterparts.
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