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Minimal perovskite decomposition, less than 5 wt.%, in coating is obtained with a perovskite powder doped with 20 mol% of MnO2, a mean particle size of 3 μm and by using an argon plasma-forming gas (60 slm) at 300 A current intensity for a 6-mm-internal-diameter (i.d).
After purging by using an argon flow for 1 min, the mixture was stirred for another 3 h.
The reaction tube was purged by using an argon flow for 1 min, then covered with a Teflon-coated screw cap after adding CHCl3 (4 mL).
After adding CHCl3 (4 mL), the reaction tube was purged by using an argon flow for 1 min, then covered with a Teflon-coated screw cap.
After addition of the Wittig reagent 5 (250 mg, 0.75 mmol) and purging by using an argon flow for 1 min, the mixture was stirred for another 5 h.
The mixture was stirred for 3 h after purging by using an argon flow for 1 min. After that, the second portion of Wittig reagent 5 (83.5 mg, 0.25 mmol) was added to the reaction mixture.
Similar(52)
Samples were thawed at 37°C and analyzed by excitation using an argon laser (488 nm) for either 10 15 min or until 10,000 cells were counted.
Samples were analyzed by flow cytometry using an argon laser at 488 and 558 nm to detect EGFP and DsRed expression, respectively, in a Calibur cytometer (Becton-Dickinson).
The cross-sectional samples were prepared by broad ion beam milling technique using an argon ion beam, and the samples were carbon-coated before imaging.
This study describes the development of a novel fluorescent tag, O-2-[aminoethyl]fluorescein, for the separation of sugars by capillary electrophoresis with fluorescence detection using an argon ion laser.
In the applied field strength range of up to 20 V/μm, electron field emission properties of these films were characterized and compared with those of amorphous carbon (a-C) thin films prepared using an argon plasma by the same SAIP apparatus.
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