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The electrical conductivity values of individual catalyst specimens were evaluated using the eqn. 5. (5).
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The catalyst specimen was mixed with KBr in a weight ratio of 1 200, and pressed into pellet to be used in the measurement.
According to Ref. [17], the as-prepared NCM specimens contain multi-walled CNT, particles of amorphous carbon and particles of the catalyst (specimen #1: nickel nanoparticles, specimen #2: Fe3O4 nanoparticles, specimen #3: cobalt nanoparticles).
For conditions of ΔT < 0, Fig. 9a, 9c shows the TGA curves for carbons deposited on SBA-15 substrates under the same substrate and gas temperatures (T S = 800°C; T G = 25°C) with and without Co catalyst, respectively (Specimens A1- and A7-series).
This indicates an extremely low content of the metal catalyst in specimen #3-TC.
A sample of isotactic poly-1-pentene has been synthesized by using a metallocene catalyst, and two specimens have been prepared displaying the most stable Form I of this polymer, reported to adopt a 31 helical conformation.
Mix enough Liquid Bio-Plastic with the catalyst to cover the specimen with 3 mm of material and add a label written in pencil to identify the specimen.
Figure 6 illustrates the temperature dependencies of χ for specimens #3 (cobalt catalyst).
W c is the second stage weight loss, attributable to the oxidation reaction of carbon with oxygen, and the residue weight is mainly attributable to Co/SBA-15 or SBA-15 for specimens without a catalyst.
All that remains is to pose the body, set the polymer with the catalyst, and mount the finished specimen on a display stand.
Mix another small batch of Liquid Bio-Plastic and catalyst and pour it over the specimen to achieve a covering layer of approximately 3 mm.
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