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Home > Products >  Tetraethylammonium perchlorate?-

Tetraethylammonium perchlorate?- CAS NO.2567-83-1

  • Min.Order: 1 Kilogram
  • Payment Terms: L/C,T/T,Other
  • Product Details

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Quick Details

  • ProName: Tetraethylammonium perchlorate?-
  • CasNo: 2567-83-1
  • Molecular Formula: C8H20N.ClO4?
  • Appearance: White crystalline solid.
  • Application: Used to make other chemicals.
  • DeliveryTime: 15 days after order confirmed
  • PackAge: 1kg/bag, 1kg/drum or 25kg/drum or as p...
  • Port: Shanghai, Ningbo, Tianjin, etc
  • ProductionCapacity: 1 Metric Ton/Month
  • Purity: 99%
  • Storage: Stored in cool, dry and ventilation pl...
  • Transportation: as per your request
  • LimitNum: 1 Kilogram

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Superior quality   moderate price & quick delivery

Details

Safety Information
Hazard Codes  Xi-O,Xi,O
Risk Statements  8-5-44-36/37/38
Safety Statements  47-37/39-26-17-36
RIDADR  1479
HazardClass  5.1
PackingGroup  II
MSDS Information
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TETRAETHYLAMMONIUM PERCHLORATE Usage And Synthesis
Chemical Properties solid
General Description White crystalline solid. May explode from heat, shock, or friction.
Air & Water Reactions Water soluble.
Reactivity Profile Oxidizing agents, such as TETRAETHYLAMMONIUM PERCHLORATE, can react with reducing agents to generate heat and products that may be gaseous (causing pressurization of closed containers). The products may themselves be capable of further reactions (such as combustion in the air). The chemical reduction of materials in this group can be rapid or even explosive, but often requires initiation (heat, spark, catalyst, addition of a solvent). Explosive mixtures of inorganic oxidizing agents with reducing agents often persist unchanged for long periods if initiation is prevented. Such systems are typically mixtures of solids, but may involve any combination of physical states. Some inorganic oxidizing agents are salts of metals that are soluble in water; dissolution dilutes but does not nullify the oxidizing power of such materials. Organic compounds, in general, have some reducing power and can in principle react with compounds in this class. Actual reactivity varies greatly with the identity of the organic compound. Inorganic oxidizing agents can react violently with active metals, cyanides, esters, and thiocyanates. Benzene, calcium hydride, charcoal, ethanol, finely divided metals, olefins, strontium hydride, sulfur react violently with perchlorates.

 

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