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1-(2-chloroethyl)-1H-tetrazol-5-amine, with the chemical formula C3H6ClN5, is a derivative of tetrazole that features a chloroethyl group. This chemical compound is recognized for its potential applications in various fields due to its unique properties.

15284-31-8

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15284-31-8 Usage

Uses

Used in Pharmaceutical Synthesis:
1-(2-chloroethyl)-1H-tetrazol-5-amine is used as an intermediate in the synthesis of pharmaceuticals for its ability to contribute to the development of new drugs with potential therapeutic benefits.
Used in Antineoplastic Applications:
In the medical field, 1-(2-chloroethyl)-1H-tetrazol-5-amine is used as an antineoplastic agent, leveraging its capacity to inhibit cell growth and induce apoptosis in cancer cells, thereby offering a potential treatment option for various types of cancer.
Used in Antimicrobial Applications:
1-(2-chloroethyl)-1H-tetrazol-5-amine has been studied for its antimicrobial properties, making it a candidate for use in medicine to combat bacterial infections.
Used in Antifungals:
1-(2-chloroethyl)-1H-tetrazol-5-amine's antifungal properties suggest potential applications in agriculture and medicine, where it could be utilized to protect crops and treat fungal infections.
Used in Organic Synthesis:
1-(2-chloroethyl)-1H-tetrazol-5-amine is also used as an intermediate in organic synthesis, contributing to the creation of various organic compounds for different industries.
It is crucial to handle 1-(2-chloroethyl)-1H-tetrazol-5-amine with care, as it may pose risks to health and the environment if not managed properly.

Check Digit Verification of cas no

The CAS Registry Mumber 15284-31-8 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 1,5,2,8 and 4 respectively; the second part has 2 digits, 3 and 1 respectively.
Calculate Digit Verification of CAS Registry Number 15284-31:
(7*1)+(6*5)+(5*2)+(4*8)+(3*4)+(2*3)+(1*1)=98
98 % 10 = 8
So 15284-31-8 is a valid CAS Registry Number.

15284-31-8SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 11, 2017

Revision Date: Aug 11, 2017

1.Identification

1.1 GHS Product identifier

Product name 1-(2-chloroethyl)tetrazol-5-amine

1.2 Other means of identification

Product number -
Other names -

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:15284-31-8 SDS

15284-31-8Relevant academic research and scientific papers

Preparation of remarkably tough polyHIPE materials via polymerization of oil-in-water HIPEs involving 1-vinyl-5-aminotetrazole

Youssef, Carlos,Backov, Renal,Treguer, Mona,Birot, Marc,Deleuze, Herve

, p. 2942 - 2947 (2010)

Interconnected microcellular polymeric monoliths having unexpected high mechanical strength have been prepared using the high internal phase emulsion (HIPE) methodology. Oil-in water concentrated emulsions of aqueous 1-vinyl-5amino [1,2,3,4]tetrazole (1-VAT) mixed with a low molar ratio (7%) of N,N′-methylenebisacrylamide as crosslinking agent were prepared using dodecane as dispersed phase and a mixture of hydrophilic surfactants. "Reverse" polyHIPE materials were obtained after radical copolymerization, solvent extraction, and drying. Their morphology, chemical composition, and physicochemical behavior are discussed.

New energetic materials: Functionalized 1-ethyl-5-aminotetrazoles and 1-ethyl-5-nitriminotetrazoles

Stierstorfer, Joerg,Tarantik, Karina R.,Klapoetke, Thomas M.

experimental part, p. 5775 - 5792 (2010/01/19)

Alkylation of 5-aminotetra-zole (1) with 2-chloroethanol leads to a mixture of the N-1 and N-2 isomers of (2-hydroxyethyl)-5-aminotetrazole. Treatment of 1-(2-hydroxyethyl)-5-ami-notetrazole (2) with SOCl2 yielded 1-(2-chlorethyl)-5-aminotetrazole (3). 1-(2-Azidoethyl)-5-aminotetrazole (4) was generated by the reaction of 3 with sodium azide. Nitration of 2, 3, and 4 with HNO3 (100%) yielded in the case of 2 and 3 1-(2-hydroxyethyl)-5- nitrimi-notetrazole (5) and 1-(2-chloroethyl)-5-nitriminotetrazole (6). In the case of 4, 1-(2-nitratoethyl)-5-nitriminotetrazole monohydrate (7) was obtained. 1-(2-Azidoethyl)-5-nitriminotetrazole (8) could be obtained by nitration of 4 with NO2BF4 via the formation of potassium 1-(2-azidoethyl)-5-nitriminote-trazolate (9). The reaction of 6 with NaN 3 resulted in the formation of the salt sodium 1-(2-chloroethyl)-5- nitrimi-notetrazolate (10 a). The deprotonation reaction of 6 was further investigated by the formation of the ammonium salt (10 b). The protonation of 2 and 4 with dilute nitric acid led to 1-(2-hydrox-yethyl)-5-aminotetrazolium nitrate (11) and 1-(2-azidoethyl)-5-aminotetrazoli-um nitrate (12), respectively. Similarly, protonation of 4 with perchloric acid led to 1-(2-azidoethyl)-5-aminotetrazo-lium perchlorate monohydrate (13). Since 5-nitrimino-tetrazoles can be used as bidentate ligands, the coordination abilities of 5, 6, and 8 were tested by the reaction with copper nitrate tri-hydrate, yielding the copper complexes ans-[diaquabis{1-(2-hydroxyethyl)-5- nitriminotetrazolato-κ2N4,O5}copper(II)] (14), trans-[diaquabis{1-(2-chloroethyl)-5-nitriminotetrazolato- κ2N4,O5}copper(II)] dihydrate (15), and [diaquabis{1-(2-azidoethyl)-5-nitrimino-tetrazolato-κ2N 4,O5}copper(II)] (16). All compounds were characterized by low-temperature single-crystal X-ray diffraction. In addition, comprehensive characterization (IR, Raman, and mul-tinuclear NMR spectroscopy (1H, 13C), elemental analysis, mass spectrometry, DSC) was performed. The heats of formation of selected compounds were computed by using heats of combustion obtained by bomb calorimetry or calculated by the atomization method. With these values and the densities determined from X-ray crystallography, several detonation parameter were calculated by the EXPLO5 program. Finally, the sensitivities towards impact and friction were determined using a BAM drop hammer and friction tester.

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