63149-32-6 Usage
Description
Formaldehyde, (3-methyl-2(3H)-benzothiazolylidene)hydrazone (9CI), also known as (3-methyl-2(3H)-benzothiazolylidene)hydrazone, is a chemical compound with the formula CH2O. It is a colorless, strong-smelling gas that is used in the production of resins, textiles, and various household products. It is also a common preservative and disinfectant. This specific derivative of formaldehyde, (3-methyl-2(3H)-benzothiazolylidene)hydrazone (9CI), has potential uses in research and chemical synthesis.
Uses
Used in Chemical Synthesis:
Formaldehyde, (3-methyl-2(3H)-benzothiazolylidene)hydrazone (9CI), is used as a chemical intermediate for the synthesis of various compounds. Its unique structure allows it to participate in a wide range of chemical reactions, making it a valuable component in the creation of new molecules.
Used in Research:
Formaldehyde, (3-methyl-2(3H)-benzothiazolylidene)hydrazone (9CI), is used as a research tool to study the properties and reactions of formaldehyde and its derivatives. Formaldehyde, (3-methyl-2(3H)-benzothiazolylidene)hydrazone (9CI) can provide insights into the behavior of formaldehyde in different chemical environments and help develop new applications for this versatile chemical.
Used in Resin Production:
Formaldehyde, (3-methyl-2(3H)-benzothiazolylidene)hydrazone (9CI), is used as a component in the production of resins. Its ability to form strong bonds with other molecules makes it an essential ingredient in the creation of durable and versatile resins used in various industries.
Used in Textile Industry:
Formaldehyde, (3-methyl-2(3H)-benzothiazolylidene)hydrazone (9CI), is used in the textile industry for various applications, such as the production of wrinkle-resistant fabrics and the finishing of textiles to improve their durability and appearance.
Used in Household Products:
Formaldehyde, (3-methyl-2(3H)-benzothiazolylidene)hydrazone (9CI), is used in the production of various household products, such as cleaning agents, disinfectants, and preservatives. Its ability to kill bacteria and other microorganisms makes it an effective component in these products.
Used as a Preservative and Disinfectant:
Formaldehyde, (3-methyl-2(3H)-benzothiazolylidene)hydrazone (9CI), is used as a preservative and disinfectant in various applications, including medical and laboratory settings. Its ability to kill bacteria and other microorganisms makes it a valuable tool in maintaining cleanliness and preventing the spread of disease.
Check Digit Verification of cas no
The CAS Registry Mumber 63149-32-6 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 6,3,1,4 and 9 respectively; the second part has 2 digits, 3 and 2 respectively.
Calculate Digit Verification of CAS Registry Number 63149-32:
(7*6)+(6*3)+(5*1)+(4*4)+(3*9)+(2*3)+(1*2)=116
116 % 10 = 6
So 63149-32-6 is a valid CAS Registry Number.
InChI:InChI=1/C9H9N3S/c1-10-11-9-12(2)7-5-3-4-6-8(7)13-9/h3-6H,1H2,2H3/b11-9+
63149-32-6Relevant articles and documents
Iminium Salts in Solid-State Syntheses Giving 100% Yield
Kaupp, Gerd,Schmeyers, Jens,Boy, Juergen
, p. 269 - 280 (2007/10/03)
Numerous reaction types in the field of iminium salts are performed in the gas-solid and solid-solid techniques in order to reach 100% yield. The stoichiometric runs are waste-free and do not require costly workup. Frequently, iminium salts were avoided, as acid catalysis was dispensable. Thioureas and α-halogenated ketones give a variety of 2-aminothiazoles via thiuronium salts in quantitative yield. A new intramolecular solid-state thermal condensation is reported. Enaminoketones are synthesized quantitatively from anilines and 1,3-diketones without catalysis and those can be used for quantitative solid-state 4-cascade reactions. Solid paraformaldehyde is used to produce methylene imines and internally trapped methylene iminium salts. Benzoylhydrazones are produced again without catalysis in the solid state. Vacuum and ball-mill techniques are particularly useful in the production of highly sensitive iminium salts. Hexahydro-1,3,5-triazines cyclorevert upon exposure to HCl gas to give solid arylmethylene iminium chlorides as new versatile reagents. These are used in arylaminomethylations of β-naphthol and of themselves to give Troeger's bases in 3-cascades. More direct are 4-cascade Troeger's base syntheses by dissolving hexahydro-1,3,5-triaryltriazines in trifluoroacetic acid. Alkylations of imines with trimethyloxonium tetrafluoroborate and triphenylmethyl cation give highly sensitive quaternary iminium salts in the ball-mill. The products are characterized by spectroscopic techniques and density functional theory (DFT) calculations at the B3LYP 6-31G* level. Molecular movements in the crystal and surface passivation are investigated with atomic force microscopy (AFM) techniques.