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929735

Sigma-Aldrich

ElectroGreen®

greener alternative

Cyclohexanone substitute for electronics, bio-sourced

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About This Item

UNSPSC Code:
12190000
NACRES:
NA.06

grade

for electronic purposes

Quality Level

description

Relative evaporation rate: 0.25

Hansen solubility parameters: SPd 7.7, SPp 3.5, SPh 6.4

Assay

≥99% (GC)

form

liquid

mol wt

105.6

greener alternative product characteristics

Design for Energy Efficiency
Use of Renewable Feedstocks
Learn more about the Principles of Green Chemistry.

impurities

≤0.2% Water (Karl Fischer)
≤1 ppm As, Cr, Cd, Cu, Hg, Mn, Ni, Pb, Zn, trace (ICP, each)

evapn. residue

≤0.05%

color

clear

viscosity

12.3  cP(20 °C)

bp

111-154 °C

density

0.9752

greener alternative category

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General description

This ElectroGreen® solvent is made of bio-based (corn/beets derived)safer alternatives to replace synthetic cyclohexanone fossil-based solvent with specifications tailored for electronics and energy applications. All our ElectroGreen® solvents line are derived from a renewable resource(verified through C14 ASTM D6866-16 testing). We are committed to bringing you Greener Alternative Products, which adhere to one or more of The 12 Principles of Greener Chemistry. Click here for more details.

This solvent blend consists of Ethyl lactate 70-90%, iso-butanol 20-30%.

Application

Our Cyclohexanone Replacement is a patented blend of bio-based solvents for use in a wide array of formulations for inks, and cleaner in electronics.

Legal Information

ElectroGreen is a registered trademark of Merck KGaA, Darmstadt, Germany

Signal Word

Danger

Hazard Statements

Hazard Classifications

Eye Dam. 1 - Flam. Liq. 3 - Skin Irrit. 2 - STOT SE 3

Target Organs

Respiratory system

Storage Class Code

3 - Flammable liquids

WGK

WGK 1

Flash Point(F)

107.0 °F

Flash Point(C)

41.66 °C


Certificates of Analysis (COA)

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Articles

Carbon-based Sustainable Organic Electronics (SOE) limit the use of critical elements and biodegrade at their end-of-life. This review offers insight on how structural and energy disorder in these materials influence device performance and includes evaluations of various transport models and their limitations.

Carbon-based Sustainable Organic Electronics (SOE) limit the use of critical elements and biodegrade at their end-of-life. This review offers insight on how structural and energy disorder in these materials influence device performance and includes evaluations of various transport models and their limitations.

Carbon-based Sustainable Organic Electronics (SOE) limit the use of critical elements and biodegrade at their end-of-life. This review offers insight on how structural and energy disorder in these materials influence device performance and includes evaluations of various transport models and their limitations.

Carbon-based Sustainable Organic Electronics (SOE) limit the use of critical elements and biodegrade at their end-of-life. This review offers insight on how structural and energy disorder in these materials influence device performance and includes evaluations of various transport models and their limitations.

Our team of scientists has experience in all areas of research including Life Science, Material Science, Chemical Synthesis, Chromatography, Analytical and many others.

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