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Hydrazine, 1-phenyl-2-[4-(trifluoromethyl)phenyl]-, also known as 1-phenyl-2-[4-(trifluoromethyl)phenyl]-hydrazine, is an organic compound with the chemical formula C13H11F3N2. It is a derivative of hydrazine, featuring a phenyl group and a 4-(trifluoromethyl)phenyl group attached to the hydrazine molecule. Hydrazine, 1-phenyl-2-[4-(trifluoromethyl)phenyl]- is characterized by its potential reactivity and may be used in the synthesis of various pharmaceuticals, agrochemicals, and other chemical products. Due to its complex structure and the presence of fluorine atoms, it can exhibit unique chemical properties and reactivity patterns, making it a subject of interest in organic chemistry and related fields.

1815-08-3

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1815-08-3 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1815-08-3 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 1,8,1 and 5 respectively; the second part has 2 digits, 0 and 8 respectively.
Calculate Digit Verification of CAS Registry Number 1815-08:
(6*1)+(5*8)+(4*1)+(3*5)+(2*0)+(1*8)=73
73 % 10 = 3
So 1815-08-3 is a valid CAS Registry Number.

1815-08-3Relevant academic research and scientific papers

Electrochemical dehydrogenation of hydrazines to azo compounds

Du, Ke-Si,Huang, Jing-Mei

supporting information, p. 1680 - 1685 (2019/04/08)

A strategy for the electrochemical dehydrogenation of hydrazine compounds is disclosed under ambient conditions. This protocol proceeded smoothly in ethanol by employing electrons as clean oxidants. Its synthetic value is well demonstrated by the highly efficient synthesis of symmetric and unsymmetric azo compounds. It is an environmentally friendly transformation and the present protocol was effective on a large scale.

Dehydrogenation of the NH?NH Bond Triggered by Potassium tert-Butoxide in Liquid Ammonia

Wang, Lei,Ishida, Akiko,Hashidoko, Yasuyuki,Hashimoto, Makoto

, p. 870 - 873 (2017/01/14)

A novel strategy for the dehydrogenation of the NH?NH bond is disclosed using potassium tert-butoxide (tBuOK) in liquid ammonia (NH3) under air at room temperature. Its synthetic value is well demonstrated by the highly efficient synthesis of aromatic azo compounds (up to 100 % yield, 3 min), heterocyclic azo compounds, and dehydrazination of phenylhydrazine. The broad application of this strategy and its benefit to chemical biology is proved by a novel, convenient, one-pot synthesis of aliphatic diazirines, which are important photoreactive agents for photoaffinity labeling.

Structure requirements for anaerobe processing of azo compounds: Implications for prodrug design

Gavin, Jason,Ruiz, Juan F. Marquez,Kedziora, Kinga,Windle, Henry,Kelleher, Dermot P.,Gilmer, John F.

, p. 7647 - 7652 (2013/02/21)

This Letter generalizes the metabolism of the azo class of compounds by Clostridium perfringens, an anaerobe found in the human colon. A recently reported 5-aminosalicylic acid-based prednisolone prodrug was shown to release the drug when incubated with the bacteria, while the para-aminobenzoic acid (PABA) based analogue did not. Instead, it showed a new HPLC peak with a relatively close retention time to the parent which was identified by LCMS as the partially reduced hydrazine product. This Letter investigates azoreduction across a panel of substrates with varying degrees of electronic and steric similarity to the PABA-based compound. Azo compounds with an electron donating group on the azo-containing aromatic ring showed immediate disproportionation to their parent amines without any detection of hydrazine intermediates by HPLC. Compounds containing only electron withdrawing groups are partially and reversibly reduced to produce a stable detectable hydrazine. They do not disproportionate to their parent amines, but regenerate the parent azo compound. This incomplete reduction is relevant to the design of azo-based prodrugs and the toxicology of azo-based dyes.

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