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Tested in a coin-type half-cell with Li counter electrode, a sample with optimized hydrothermal condition at 180 °C for 9 hours provides the optimal anode performance, retained 726 mAh g−1 capacity after 90 cycles at 500 mA g−1 current discharge rate.
The sample with optimized structure shows the best rate performance with a high capacity of 622 mAh g−1 at the current density of 4687 mA g−1.
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The chlorpyrifos pesticide was extracted from grapes samples with optimized extraction method (Hussain & Samia, 2010).
Indeed, the approach introduced here is very promising for the design of real magnetic nanocomposite samples with optimized features.
Very high compressive strength of 100 MPa and elastic modulus of 5 GPa are obtained for samples with optimized compositions and heat treatments.
Finally, the new 3‑aminophenylboronic acid-functionalized based on silica stationary phase was applied to separate chito-oligosaccharide samples with optimized mobile phase conditions and showed acceptable chromatograms.
The minimum reflection loss (RL) (higher absorption efficiency) was reached less than −30 dB (absorption >99.9%) for optimized sample with optimal conditions, including 1 wt% of Fe3O4, 3 wt% of CCTO, 1 wt% of P-gC3N4 with only 1 mm thickness at the 8 12 GHz frequency range (X-band).
The sample modified with optimized amount (2 wt.%) of LAS presents obviously improved initial coulombic efficiency, cyclic capacity, high rate performance and cycle stability.
The sample with the optimized thickness, TP (3L), was chosen to be attached to the STNA and LTNA scattering layers, with a thickness of around 1.8 μm as shown in Figure 1c,d.
Square samples and flat tensile samples were manufactured with optimized process parameters to study the evolution of microstructure, microhardness and tensile property.
The optimized sample preparation coupled with optimized GC MS analysis in selected ion monitoring mode provided good linearity from 0.010 to 5.0 ng mL−1, and a limit of detection between 0.0050 and 0.010 ng mL−1, good intra-day and inter-day precision (0.30 6.3% and 5.1 9.5%, respectively), and good accuracy (relative recovery; 91 117% at 0.20 ng mL−1 and 77 105% at 2.5 ng mL−1).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com