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(Z)-1,-Bis(2-methoxy-5-(trifluoromethyl)phenyl)diazene oxide

(Z)-1,-Bis(2-methoxy-5-(trifluoromethyl)phenyl)diazene oxide

Product ID D3300
Cas No. 2377-31-3
Purity ≥98%
Product Unit SizeCostQuantityStock
25 mg $118.00 In stock
100 mg $355.00 In stock
250 mg $670.00 In stock
500 mg $1,104.00 In stock
Bulk Quote

Quicklinks

  • Description
  • Product Info
  • Shipping and Storage
  • Downloads
  • References
  • Description
  • Product Info
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  • Downloads
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Description

(Z)-1,-Bis(2-methoxy-5-(trifluoromethyl)phenyl)diazene oxide is an azoxy compound useful as an intermediate in chemical synthesis. (Z)-Diazene oxide may be useful in the production of novel azo dyes. However, many well developed azo dyes are known to bioaccumulate in the environment with hazardous effects. There may be some unique bacteria that are able to degrade these substances.

Product Info

Cas No.

2377-31-3

Purity

≥98%

Formula

C16H12F6N2O3

Formula Wt.

394.27

Synonym

(Z)-Diazene Oxide

Melting Point

130°C

Appearance

Yellow solid

Shipping and Storage

Store Temp

-20°C

Ship Temp

Ambient

Downloads

Info Sheet

D3300 Info Sheet PDF

References

Chittal V, Gracias M, Anu A, et al. Biodecolorization and biodegradation of azo dye reactive orange-16 by marine Nocardiopsis sp. Iran J Biotechnol. 2019 Sep 1;17(3):e1551. PMID: 32195279.

Chen G, An X, Li H, et al. Detoxification of azo dye Direct Black G by thermophilic Anoxybacillus sp. PDR2 and its application potential in bioremediation. Ecotoxicol Environ Saf. 2021 May;214:112084. PMID: 33640726.

Nho S, Cui X, Kweon O, et al. Phylogenetically diverse bacteria isolated from tattoo inks, an azo dye-rich environment, decolorize a wide range of azo dyes. Ann Microbiol. 2021 Sep 21;71(1):10.1186. PMID: 34744534.

Zhuang M, Sanganyado E, Xu L, et al. High throughput sediment DNA sequencing reveals azo dye degrading bacteria inhabit nearshore sediments. Microorganisms. 2020 Feb 9;8(2):233. PMID: 32050437.

Ali S, Al-Tohamy R, Koutra E, et al. Coupling azo dye degradation and biodiesel production by manganese-dependent peroxidase producing oleaginous yeasts from wood-feeding termite gut symbionts. Biotechnol Biofuels. 2021 Mar 8;14(1):61. PMID: 33685508.

Custom Order

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