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13478-00-7
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???(??):
??(II)??,?????;????(Ⅱ);????,???????;????;????6???;????(Ⅱ)????;????,???????(NICKELNITRATE,HEXAHYDRATE);?? ?????? ????????
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Nickel(II) nitrate hexahydrate
???(??):
NICKEL NITRATE;NICKEL NITRATE HEXAHYDRATE;NICKEL(II) NITRATE;Nitric acid nickel(II) salt hexahydrate;Nickel (II) nitrate hexahydrate≥ 97% (Titration);NickelNitrateAr;Nickelousnitrate,N;Nickel Nitrate (Ous);NICKEL (OUS) NITRATE;NICKEL NITRATE, HYDROUS
CBNumber:
CB3115275
???:
H12N2NiO12
??? ??:
290.79
MOL ??:
13478-00-7.mol
MSDS ??:
SDS

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56 °C(lit.)
?? ?
137 °C
??
2.05 g/mL at 25 °C(lit.)
?? ??
800kg/m3
???
137°C
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Store at +5°C to +30°C.
???
940g/L
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Specific Gravity
2.05
??????(pH)
5 (50g/l, H2O, 20℃)
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238.5g/100mL(20℃)
??
Hygroscopic
Merck
14,6513
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ACGIH: TWA 0.1 mg/m3
NIOSH: IDLH 10 mg/m3; TWA 0.015 mg/m3
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InChIKey
AOPCKOPZYFFEDA-UHFFFAOYSA-N
CAS ??????
13478-00-7(CAS DataBase Reference)
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  • ?? ? ?? ??
  • ?? ? ???? ?? (GHS)
??? ?? O,T,Xi,Xn,N
?? ???? ?? 45-8-22-43-40-68-50/53-48/23-42/43-41-38-20/22-61-49
????? 53-17-36/37-45-61-60
????(UN No.) UN 2725 5.1/PG 3
WGK ?? 3
RTECS ?? QR7300000
TSCA Yes
HS ?? 2834 29 20
?? ?? 5.1
???? III
?? LD50 orally in Rabbit: 1620 mg/kg
?????? ??? 2019-1-946
?? ? ???? ????: ????; ???(??)????: ????[Nickel nitrate; 13138-45-9, 14216-75-2] ? ?? 0.1% ?? ??? ???
????(GHS): GHS hazard pictogramsGHS hazard pictogramsGHS hazard pictogramsGHS hazard pictogramsGHS hazard pictograms
?? ?: Danger
??·?? ??:
?? ??·?? ?? ?? ?? ?? ?? ? ?? ?? P- ??
H272 ??? ???? ?; ??? ??? ??;??? ?? ?? 2
?? 3
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GHS hazard pictograms P210, P220, P221P280, P370+P378,P501
H315 ??? ??? ??? ????? ?? ????? ?? 2 ?? GHS hazard pictograms P264, P280, P302+P352, P321,P332+P313, P362
H317 ????? ?? ??? ??? ? ?? ?? ??? ?? ?? 1 ?? GHS hazard pictograms P261, P272, P280, P302+P352,P333+P313, P321, P363, P501
H318 ?? ?? ??? ??? ?? ? ?? ?? ??? ?? ?? 1 ?? GHS hazard pictograms P280, P305+P351+P338, P310
H334 ?? ? ????? ??, ?? ?? ?? ?? ?? ??? ? ?? ??? ??? ?? ?? 1 ?? GHS hazard pictograms P261, P285, P304+P341, P342+P311,P501
H341 ???? ??? ??? ??? ??? (????? ???? ????? ???? ???? ???? ??? ?? ????? ??? ???? ??) ???? ???? ?? ?? 2 ?? P201,P202, P281, P308+P313, P405,P501
H350 ?? ??? ? ?? (????? ?? ???? ???? ???? ??? ?? ????? ??? ???? ??) ??? ?? ?? 1A, 1B ?? GHS hazard pictograms
H360 ?? ?? ????? ??? ??? ? ?? ???? ?? ?? 1A, 1B ?? GHS hazard pictograms
H372 ??? ?? ?? ???? ??(??, ??? ?? ??? ?? ??? ??)? ??? ??? ?? ???? ?? - ?? ?? ?? 1 ?? GHS hazard pictograms P260, P264, P270, P314, P501
H410 ??? ??? ?? ????? ?? ??? ?? ????? ?? - ?? ?? 1 ?? GHS hazard pictograms P273, P391, P501
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P201 ?? ? ?? ???? ?????.
P210 ?·???·??·????? ????? - ?? ???.
P273 ???? ???? ???.
P280 ????/???/???/?????? ?????.
P308+P313 ?? ?? ??? ???? ???? ??· ??? ????.
NFPA 704
0
1 0

???? MSDS


Nickel(II) nitrate hexahydrate

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Nickel (II) nitrate hexahydrate appears as green crystals and substantially soluble in water. It is stable, a strong oxidiser, and incompatible with reducing agents. It has wide industrial applications in nickel plating as catalysts and is indirectly associated with other industries of nickel alloy manufacturers, nickel miners, smelters and refiners, nickel platers, and exposure to alloys, for example, in coinage.

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Green crystal

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Nickel plating, manufacturing of ceramic colorsNickel(II) nitrate hexahydrate 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.

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Emerald green crystals of the hexahydrate Ni(N03)2?6H20 crystallize from aqueous solutions at room temperature. These are isomorphous with the corresponding cobalt(II) salt containing the regular octahedral [Ni(H20)6]2+ ions with Ni-O distances = 2.03 A. The tetrahydrate crystallize above 54° and the dihydrate above 85.4°. The pale green anhydrous nitrate can be obtained by dehydration of the hydrate with dinitrogen pentoxide in fuming nitric acid or by the liquid phase reaction of dinitrogen tetroxide with nickel carbonyl [the gas phase reaction gives the nitrite Ni(N02)2]
Ni(CO)4+2N2O4 -* Ni(N03)2+2NO+4CO
The first product of this latter rather violent reaction is the adduct Ni(NO3)2N2O4 from which the nitrogen tetroxide is removed by heating in vacuo. It can also be prepared by the reaction of dinitrogen tetroxide-ethyl acetate mixtures with nickel(II) chloride. The infrared spectrum shows it to be a typical covalent nitrate. It is involatile and decomposes upon heating in nitrogen to give the nitrite Ni(NO2)2 above 260°.

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Nickel(II) nitrate hexahydrate (Ni(NO3)2.6H2O) is a hydrated nickel(II) salt. Its thermal degradation has been investigated by thermogravimetric methods under quasi-isothermal conditions.

Safety Profile

Confirmed carcinogen. Moderately toxic by ingestion. When heated to decomposition it emits toxic fumes of NOx. See also NICKEL(II) NITRATE.

Purification Methods

Crystallise it from water (3.3g/mL) by partial evaporation in a desiccator. Store it in a desiccator as it is deliquescent.

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