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In brief, the nucleation of Au NPs occurred at relatively very lower temperature of 50 °C and decent round dome-shaped Au NPs can be fabricated between 350 and 700 °C.
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High conductivity of electrolyte material extends the possibility of SOFC to run at very lower temperatures (i.e., down to 400 °C).
Prior work has also demonstrated PVC's compatibility in PCR applications; however, this technique is most advantageous when used to determine the pH change associated with very high yield, lower temperature isothermal processes, such as LAMP.
From the thermal analysis (DSC-TG), sodium dithionite starts to lose crystal water at the temperature around 60 °C which makes the sodium dithionite very unstable at relatively lower temperature.
Samples were taken after 15 s (lanes 7, 8) to detect the thioester, and 15 μM diUb-His6 was added and further samples (lanes 9, 10) taken after 10 min. To monitor formation of the oxyester, the reaction was allowed to proceed for 15 min and carried out at 37 °C instead of 25 °C as oxyester formation is very slow at the lower temperature.
Aluminum was predominantly released under oxic conditions at 70 and 90 °C, and remained very low at lower temperatures andunder anoxic conditions (Figs. 4 and 5).
It is anticipated that prolonged heating can affect the mobility of these molecules and enable the movement that otherwise would not be possible or would be very slow at lower temperatures.
This variability is very high at lower temperatures.
At relatively lower temperature (650 °C) and very short reaction time (3 min), pure phase of Li3V2(PO4)3 could be synthesized in microwave irradiation field.
These studies should be viewed as helpful however they often deal with lower temperature heat stress; for very high body temperatures, immersion is recommended.
However, if the alloy is quenched from the high temperature, the reverse transformation occurs at a much lower temperature, so that a very fine precipitate forms.
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