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Deuteron® LE 512

1 of 109 products in this brand
Deuteron® LE 512 stands as a 100% active conductivity additive founded on tetraalkylammonium ethyl sulfate. The utilization of these anti-static additives facilitates the fine-tuning of surface and volume resistivity across diverse systems. The efficacy of Deuteron® LE 512 anti-static properties primarily relies on surface migration and the ionic character of the cations to achieve the desired adjustments in electrical properties.

Chemical Family: Quaternary Ammonium Compounds

Functions: Anti-Static Agent, Wetting Agent

Labeling Claims: Plasticizer-free, Solvent-free

Features: Anti-Static, Good Anti-Static Properties

Technical Data Sheet

Knowde Enhanced TDS

Identification & Functionality

CASE Ingredients Functions
Industrial Additives Functions

Features & Benefits

CASE Ingredients Features
Industrial Additives Features
Product Highlights
  • Deuteron®’s antistatic additives are able to achieve resistivity ranges between 1x105 und 1*109 Ω (100 kΩ - 1 G Ω) – Anti-static properties according to EN ISO 20345.
  • Anti-static shoes: 1x105 und 1*108 Ω (100 kΩ -100 MΩ) (according to EN 61340-4-3) ESD applications: 1x105 und 3,5*107 Ω (100 kΩ -35 MΩ) (according EN 61340-5-1) The effect of quaternary ammonium compounds is highly influenced by the type of system (resins, additives, pigments, etc.) and by the chosen measurement conditions.

 Fields of application include:

  • Electrostatic adjustment of spray paints
  • PU systems (foam, shoe soles and casting resins)
  • UV and EB curable systems
  • PVC
  • Floor coatings
  • Synergistic wetting agent for carbon blacks, graphite and carbon fibers

Dosage

  • Typical addition level: 0.2 % - 5 %
  • The exact quantities to be used depend on the system and must be determined individually for the intended application.

Processing

  • Deuteron® LE 512 can be used to prepare an interme- diate by diluting at room temperature in suitable polar solvents or water. Direct processing is only possible after melting. The melting temperature should be in a range of 95 °C - 110 °C and to ensure proper distribution the molten product should be added while stirring.

Applications & Uses

Use Level
0.2 - 5 %
Application and Dosage Information
  • Deuteron®’s antistatic additives are able to achieve resistivity ranges between 1x105 und 1*109 Ω (100 kΩ - 1 G Ω) – Anti-static properties according to EN ISO 20345.
  • Anti-static shoes: 1x105 und 1*108 Ω (100 kΩ -100 MΩ) (according to EN 61340-4-3) ESD applications: 1x105 und 3,5*107 Ω (100 kΩ -35 MΩ) (according EN 61340-5-1) The effect of quaternary ammonium compounds is highly influenced by the type of system (resins, additives, pigments, etc.) and by the chosen measurement conditions.

 Fields of application include:

  • Electrostatic adjustment of spray paints
  • PU systems (foam, shoe soles and casting resins)
  • UV and EB curable systems
  • PVC
  • Floor coatings
  • Synergistic wetting agent for carbon blacks, graphite and carbon fibres

Dosage

  • Typical addition level: 0.2 % - 5 %
  • The exact quantities to be used depend on the system and must be determined individually for the intended application.

Processing

  • Deuteron® LE 512 can be used to prepare an interme- diate by diluting at room temperature in suitable polar solvents or water. Direct processing is only possible after melting. The melting temperature should be in a range of 95 °C - 110 °C and to ensure proper distribution the molten product should be added while stirring.

Properties

Physical Form
Appearance
Yellowish paste
Typical Properties
ValueUnitsTest Method / Conditions
Densityapprox. 0.96g/cm³
Melting Point88.0°C
Acid Numberapprox. 3mg KOH/g
pH (1% in water)approx. 7.5

Packaging & Availability

Packaging Type
Regional Availability
  • Canada
  • Mexico
  • USA
Packaging Information
  • Steel drum (25 kg net)

Storage & Handling

Shelf Life
24 months
Storage and Shelf Life Conditions
  • 24 months in tightly closed original containers at room temperature.
  • At low temperatures a viscosity increase or solidification can occur. The product can be regenerated by applying gentle heat. The temperature should not exceed 40 °C.