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Sm(NO3)3 • 6H2O Samarium Nitrate Hydrate 99.9% Growth Promoter

Sm(NO3)3 • 6H2O Samarium Nitrate Hydrate 99.9% Growth Promoter

Sm(NO3)3 • 6H2O Samarium Nitrate

Samarium Nitrate Hydrate 99.9%

Sm(NO3)3 • 6H2O Samarium Nitrate Hydrate

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Product Details
CAS #:
13759-83-6
Molecular Formula:
Sm(NO3)3 • 6H2O
EC No.:
233-798-6
Purity:
99.9%
Molecular Weight:
444.47
Appearance:
Liquid
Melting Point:
N/A
Boiling Point:
N/A
Density:
N/A
Exact Mass:
275.895 G/mol
Monoisotopic Mass:
275.895325 Da
Highlight:

Sm(NO3)3 • 6H2O Samarium Nitrate

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Samarium Nitrate Hydrate 99.9%

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Sm(NO3)3 • 6H2O Samarium Nitrate Hydrate

Payment & Shipping Terms
Minimum Order Quantity
500g
Packaging Details
0.5-1 kilogram per bottle, 50 kilograms per drum, 500 kilograms per pallet
Delivery Time
45-60 Workdays
Payment Terms
T/T
Supply Ability
100 tons
Product Description

Samarium Nitrate Hydrate (Sm(NO₃)₃·6H₂O): Chemical Additive, Reaction Catalyst, Growth Promoter

 

An inorganic compound with the chemical formula Sm(NO₃)₃·6H₂O, appearing as beige-yellow crystals. It is soluble in water (approximately 25g of hydrate dissolves in 100mL water at 18°C) and benzene. When heated to 760°C, it decomposes into samarium oxide.

Applications

  1. Used as an additive in the chemical industry.
  2. Acts as a catalyst for various reactions.
  3. Applied as a growth agent for crops.

 

Product Series

Product

Product Code

Safety Data

Technical Data

Samarium Nitrate 99.9%

ET-SmN

 Samarium Nitrate Hydrate.pdf Samarium Nitrate Hydrate.pdf

 

Health and Safety Information

Signal Word Danger
Hazard Statements H272-H315-H319-H335
Hazard Codes O, Xi
Risk Codes 8-36/37/38
Safety Statements 17-26-36/37/39
RTECS Number VP3150000
Transport Information UN 1477 5.1/PG 2
WGK Germany 2

 

 

Packaging Specifications

  • Standard packaging: 50 kg/drum, 500 kg/pallet, ton bags
  • Sample packaging: 500 g/bag, 1 kg/bottle

 

Production Method

  1. Dissolve an appropriate amount of samarium oxide in 50% nitric acid solution using a steam bath for heating.
  2. Filter the solution if any residual solids remain.
  3. Heat the clarified solution in a 75°C water bath to evaporate most solvent.
  4. Cool to allow crystallization.
  5. Collect crystals via filtration and dry them in a vacuum desiccator containing granular sodium hydroxide and magnesium perchlorate.

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