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By controlling the reaction temperature and NaOH concentration, Ni nanoparticles with designed size can be obtained by reduction of nickel sulfate with hydrazine hydrate employing the surfactant of PVP.
While the trihalides can be obtained by reduction of the pentahalides with hydrogen, the dihalides do not exist.
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Oxygen deficiency of NFNs was obtained by reduction in hydrogen.
Pd nanoparticles were obtained by reduction of H2PdCl4 at room temperature with sodium borohydride (NaBH4).
The same results were obtained by reduction of pre-formed 1 1 complexes with β-CD.
Various kinds of unusual morphologies of silver crystals were obtained by reduction of AgNO3 with L-ascorbic acid (AsA).
In the synthesis of multilayers, the W- and Ta-based layers were obtained by reduction of tungsten chloride or tantalum chloride with H2.
The same mixture is obtained by reduction of either 4-dimethylamino-3,5,6-trimethoxycarbonyl-3,4-dihydro-2H-thiopyran II or 3,5,6-trimethoxycarbonyl-2H-thiopyran 3,5,6-trimethoxycarbonyl-2H-thiopyran 3,5,6-trimethoxycarbonyl-2H-thiopyran 3,5,6-trimethoxycarbonyl-2H-thiopyran
The deuterated [11C]methyl iodide was obtained by reduction of [11C]carbon dioxide with LiAl2H4 followed by treatment with hydriodic acid at standard reaction conditions used for [11C]methyl iodide production [11].
Optimal protein expression was obtained by reduction of the fermentation temperature and addition of casamino acids as a supplemental nitrogen source and to minimize the activity of yeast produced proteases.
The new tri-aromatic ring diamine, with trifluoromethyl groups at β position of amine group and bridged by ether bonds, was obtained by reduction of the corresponding dinitro-compound which was synthesized by coupling of 2-chloro-5-nitro-1-trifluoromethylbenzene with 1,3-hydroquinone in presence of strong base.
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