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It is also possible to more than double the power of an engine by supercharging; however, increased charge density and temperature, resulting from supercharging, increase the tendency for combustion knock or roughness in the spark-ignition engine and thus necessitate an undesirable decrease in compression ratio or the use of an antiknock fuel.
We interpret this as increased charge transfer of the system during illumination and increased DC bias.
The increased charge motility could also be demonstrated by surface photovoltage spectra shown in Fig. 5b.
Electronchemical impedance spectroscopy (EIS) measurement implied the increased charge separation efficiency of the particles.
Electrochemical impedance spectroscopy (EIS) showed considerably increased charge transfer resistance (Rct) for the electrodes after standing.
Therefore, TX-100 modified graphene surface shows increased charge transfer reactions.
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The intertwined nanocomposites showed increased charge-storage capacity without compromising the charge/discharge kinetics in MWCNTs or MoO3 nanowires.
In addition, a longer press time led to an increased resistance of electron recombination (Rct) and an increased charge-collection efficiency.
By combining nickel oxide with a capacitive material such as activated carbon within the two-electrode symmetric cell, systems with increased charge-storage capabilities have been obtained.
However, when the content of α-TiP was above 1 wt%, Jsc, Voc and hence η decreased with increasing α-TiP content, which probably resulted from the decreased diffusion coefficient of I3 − and the increased charge-transfer resistance.
The Tat PTD is enriched in positively charged amino acids (YGKKKRRQRRR), and, in order to rule out the possibility that the improvement of gene transfer is a result of increased charge-directed binding between viruses and cell surface, the cells were treated with heparinase 1 for 1 h at 25°C prior to incubation with PTD.AdeGFP.
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