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1,10-phenanthroline Hydrochloride
1,10-phenanthroline Hydrochloride

1,10-phenanthroline Hydrochloride

MOQ : 25 Grams

1,10-phenanthroline Hydrochloride Specification

  • Density
  • 1.33 Gram per cubic centimeter(g/cm3)
  • Molecular Weight
  • 216.68 g/mol
  • Melting Point
  • >300C (decomposes)
  • EINECS No
  • 211-293-6
  • Poisonous
  • Non-poisonous
  • Other Names
  • 1,10-Phenanthroline monohydrochloride; Orthophenanthroline hydrochloride
  • Appearance
  • White to Off-White Crystalline Powder
  • HS Code
  • 29349900
  • Shape
  • Crystalline
  • Smell
  • Odorless
  • Solubility
  • Soluble in water, ethanol
  • Structural Formula
  • C12H8N2HCl
  • Purity
  • 99%
  • Ph Level
  • 4.0-5.0 (1% Solution)
  • Physical Form
  • Solid
  • Molecular Formula
  • C12H9N2HCl
  • Grade
  • Analytical Reagent (AR) Grade
  • Boiling point
  • Not applicable (decomposes)
  • CAS No
  • 637-51-0
  • Usage
  • Ligand in coordination chemistry, reagent for iron determination, indicator in redox titrations, chemical synthesis intermediate
  • Shelf Life
  • 2 years under proper storage conditions
  • Storage Condition
  • Store in a cool, dry place, tightly closed, protected from light
  • UN Number
  • Not regulated
  • Hazard Information
  • May cause irritation to eyes, respiratory system, and skin
  • Packaging
  • Typically in 25 g, 100 g, or custom packaging
  • Stability
  • Stable under recommended storage conditions
 

1,10-phenanthroline Hydrochloride Trade Information

  • Minimum Order Quantity
  • 25 Grams
  • Supply Ability
  • 1 Gram Per Week
  • Delivery Time
  • 1 Week
 

About 1,10-phenanthroline Hydrochloride

1,10-phenanthroline Hydrochloride

CAS Number : 18851-33-7

Molecular Formula : C12H9CIN2.H2O

Molecular Weight(Mass): 234.69gm/mole

Appearance : White crystalline powder, turns to pinkish

Assay (acidimetric, dried): 99%

Suitability : 10% solution in water is clear

Melting range : 215-220C(Dec.)


Applications in Analytical and Coordination Chemistry

1,10-Phenanthroline Hydrochloride is valued in laboratories for its role as a ligand in coordination chemistry and as a reagent for determining iron concentrations. Its precise interaction in redox titrations and reliability in chemical synthesis make it a preferred choice among analytical chemists.


Safety and Handling Precautions

Despite being non-poisonous, this compound can irritate eyes, skin, and the respiratory tract. Always handle with protective gear and prevent dust formation. Store it in a tightly sealed container in a cool, dry environment away from light to maintain its stability and integrity.


Reliable Quality and Packaging Options

Produced to analytical reagent (AR) grade standards, the product boasts a purity of 99%. Available in 25 g and 100 g packsor custom sizesits controlled packaging ensures preservation of quality throughout its 2-year shelf life under proper storage conditions.

FAQs of 1,10-phenanthroline Hydrochloride:


Q: How should 1,10-phenanthroline hydrochloride be stored for optimal stability?

A: It should be kept in a tightly closed container in a cool, dry place, away from direct light to remain stable for up to 2 years.

Q: What are the primary uses of 1,10-phenanthroline hydrochloride in chemical laboratories?

A: It is primarily used as a ligand in coordination chemistry, as a reagent for iron determination, an indicator in redox titrations, and as an intermediate in chemical synthesis.

Q: When can this compound cause irritation, and what protection is recommended during handling?

A: Irritation of the eyes, skin, or respiratory system may occur upon contact or inhalation. Always use gloves, lab coats, and eye protection when handling the substance.

Q: Where is this product primarily supplied from and in what packaging sizes?

A: It is distributed, exported, and manufactured in India, typically offered in 25 g, 100 g, or custom packaging to meet various laboratory needs.

Q: What benefit does its high purity and analytical reagent grade offer?

A: The 99% purity and AR grade ensure reliable, reproducible results in analytical procedures and chemical reactions, minimizing contaminants and errors.

Q: How does its solubility enhance its laboratory applications?

A: High solubility in water and ethanol permits its easy preparation for various tests, making it efficient for reagent usage and indicator functions.

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