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It is used as a precursor in the manufacturing of other nickel salts and supported nickel catalysts. It finds use as a catalyst in organic synthesis. Further it is used in electroplating and as a mordent in textile dyeing. It is a precursor for preparing nickel sulfide-reduced graphene oxide (RGO) composite powders with high initial capacities and good cycling performance. It can be employed in the preparation of nickel and nickel oxide nanocrystals impregnated O-MWCNTs (oxygen-functionalized multi-walled carbon nanotubes) with potential applications in semiconductor industries. It finds use in improving cycling stability ad rate capability of Li2MnO3.
Lee, S. M.; Ko, Y. N.; Choi, S. H.; Kim, J. H.; Kang, Y. C. Capacitive properties of reduced graphene oxide microspheres with uniformly dispersed nickel sulfide nanocrystals prepared by spray pyrolysis. Electrochim. Acta 2015, 167, 287-293.
Klein, A.; Axmann, P.; Yada, C.; Wohlfahrt-Mehrens, M. Improving the cycling stability of Li2MnO3 by surface treatment. J. Power Sources 2015, 2, 302-307.
Wang, W. N.; Itoh, Y.; Lenggoro, I. W.; Okuyama, K. Nickel and Nickel oxide Nanoparticles Prepared from Nickel nitrate hexahydrate by a Low Pressure Spray Pyrolysis. Mat. Sci. Eng. B-Solid 2004, 111 (1), 69-76.
Gefahrenhinweise (EU): H272-H302-H332-H315-H318-H334-H317-H341-H350-H360-H372
May intensify fire; oxidizer. Harmful if swallowed. Harmful if inhaled. Causes skin irritation. Causes serious eye damage. May cause allergy or asthma symptoms or breathing difficulties if inhaled. May cause an allergic skin reaction. Suspected of causing genetic defects. May cause cancer. May damage fertility or the unborn child. Causes damage to organs through prolonged or repeated exposure.
Take any precaution to avoid mixing with combustibles. Obtain special instructions before use. Avoid release to the environment. IF exposed or concerned: Get medical advice/attention. Dispose of contents/container in accordance with local/regional/national/international regulations.