Sentence examples for improvement of rate performance from inspiring English sources

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Extra ion-diffusion paths were also created accordingly, resulting in the improvement of rate performance.

Here we report a significant improvement of rate performance of micron LiNi0.6Co0.2Mn0.2O2 cathode material with high loading level of more than 10 mgcm−2, through simple and homogeneous dispersion and interweaving of bulk carbon fibers (CF) to active material.

An improvement of rate performance and cycling stability for both the LiFePO4 cathode and the graphite anode is obtained in 1.0 mol L−1 LiPF6/electrolytetrolyte containing 0.2 mol L−1 LiFSI and 0.2 mol L−1 LiBOB salts.

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Optimized performance could be obtained by flowing Ar during the first step at 800 °C, which showed simultaneous improvement of the rate performance, room- and high-temperature cyclabilities, discharge capacity, and proportion of the high-voltage discharge relative to conventional synthesis in an oxidizing condition.

The results suggest that the improvement of the rate performance is attributed to the chromium doping, which facilitates the phase transformation between triphylite and heterosite during cycling, and conductivity improvement by carbon coating.

These detectors allow an improvement of the count rate performance of the PET systems, reducing the scattered and the random events while increasing the true events at high activity concentration.

While in SDM [8], independent data streams are sent from the different antennas in order to increase the transmission rate, in STBC [9, 10] the multiple transmission elements are used to implement a space-time code targeting the improvement of the error rate performance with respect to that achieved with single-antenna transmission.

The current research priorities about tin dioxide-based anodes mainly focus on improvement of structure stability and rate performance due to the intrinsic issues of huge volume change and poor conductivity of tin dioxide materials.

We show, in the simulation results, that the proposed precoder provides a significant improvement in terms of bit error rate performance compared to other traditional precoding strategies.

From the comparison of the electrochemical performances of the MnO and N-doped carbon nanocoposites derived from different carbon sources, pyridinic N contributes more to the improvement of cycling performance and rate capability than pyrrolic N.

Decreasing the graphite coating thickness leads to a limited rate performance improvement of the electrode.

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