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For comparison, the photocatalytic performances of samples with different concentrations were shown in Additional file 1: Figure S2.
With Li4Ti5O12/Li half-cell, the cycling performances of samples LTO0.8, LTO1.0, LTO1.2 and LTO1.4 at 0.2 C were examined, and the results are shown in Fig. 5a.
Figure 6d shows the cycling performance of sample S4 for five cycles.
These two reasons induced a better optical performance of sample A1.
In this work we compared the performance of sample preparation methods for the SPME-GC-MS analysis of urine samples.
Compared with untreated shale oil, after removing basic nitrogen compounds, the FCC performance of sample B improved considerably.
But the performance of sample 4 changed little, indicating that the different carbon-coated materials used in conjunction have little effect on the detonation velocity of the samples.
The good cycle performance of sample I is believed to originate from the combination of the advantages of the three conductive agents.
However, the photocatalytic performance of sample a in the experiment of decomposing congo red is better than that in the experiment of decomposing methyl orange.
Improved performance of sample Ar3 as compared to Ar1 and Ar2 is probably because of smaller particle size and homogeneous distribution of platinum nano particles.
The improved electrochemical performance of sample SN was attributed to the compromise effect between the increased Li2MnO3 phase and the enhanced Li/Ni disorder.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com