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109705-16-0

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109705-16-0 Usage

Description

(2-fluoro-4-methylphenyl)urethane, also known as FMU, is a chemical compound with the molecular formula C9H11NO2F. It is a urethane derivative and belongs to the class of organic compounds known as phenylureas. FMU is a white crystalline solid with a slightly sweet odor and is soluble in organic solvents. It is commonly used in the synthesis of organic compounds and pharmaceuticals.

Uses

Used in Pharmaceutical Industry:
(2-fluoro-4-methylphenyl)urethane is used as a synthetic intermediate for the production of various pharmaceuticals. Its unique chemical structure allows it to be incorporated into the design and synthesis of new drug molecules, potentially leading to the development of novel therapeutic agents.
Used in Polymer Industry:
(2-fluoro-4-methylphenyl)urethane is used as a monomer or building block in the production of polymers. Its incorporation into polymer chains can impart specific properties, such as enhanced stability or improved performance in various applications.
Used in Adhesive and Coating Industry:
(2-fluoro-4-methylphenyl)urethane is used as a component in the formulation of adhesives and coatings. Its presence in these formulations can contribute to improved adhesion, durability, and resistance to environmental factors.
It is important to handle (2-fluoro-4-methylphenyl)urethane with caution, as it may pose hazards to human health and the environment. Proper safety measures should be taken during its production, use, and disposal to minimize potential risks.

Check Digit Verification of cas no

The CAS Registry Mumber 109705-16-0 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,0,9,7,0 and 5 respectively; the second part has 2 digits, 1 and 6 respectively.
Calculate Digit Verification of CAS Registry Number 109705-16:
(8*1)+(7*0)+(6*9)+(5*7)+(4*0)+(3*5)+(2*1)+(1*6)=120
120 % 10 = 0
So 109705-16-0 is a valid CAS Registry Number.

109705-16-0Upstream product

109705-16-0Downstream Products

109705-16-0Relevant articles and documents

Power and structure-variable fluorinating agents. The N-fluoropyridinium salt system

Umemoto, Teruo,Fukami, Shinji,Tomizawa, Ginjiro,Harasawa, Kikuko,Kawada, Kosuke,Tomita, Kyoichi

, p. 8563 - 8575 (2007/10/02)

The usefulness of the N-fluoropyridinium salt system as a source of fluorinating agents was examined by using substituted or unsubstituted N-fluoropyridinium triflates 1-11, N-fluoropyridinium salts possessing other counteranions 1a-d and 3a, and the counteranion-bound salts, N-fluoropyridinium-2-sulfonates 12 and 13. Electrophilic fluorinating power was found to vary remarkably according to the electronic nature of the ring substituents. This power increased as the electron density of positive nitrogen sites decreased, and this was correlated to the pKa values of the corresponding pyridines. By virtue of this variation, it was possible to fluorinate a wide range of nucleophilic substrates differing in reactivity. It is thus possible to fluorinate aromatics, carbanions, active methylene compounds, enol alkyl or silyl ethers, vinyl acetates, ketene silyl acetals, and olefins through the proper use of salts pentachloro 6 through 2,4,6-trimethyl 2, their power decreasing in this order. All the reactions could be explained on the basis of a one-electron-transfer mechanism. N-Fluoropyridinium salts showed high chemoselectivity in fluorination, the extent depending on the reactive moiety. In consideration of these Findings, selective 9α-fluorination of steroids was carried out by reacting 1 with tris(trimethylsilyl ether) 73 of a triketo steroid. Regio- or stereoselectivity in fluorination was determined by a N-fluoropyridinium salt structure. Steric bulkiness of the N-F surroundings hindered the ortho fluorination of phenols and aniline derivatives, while the capacity for hydrogen bonding on the part of the counteranions prompted this process, and the counteranion-bound salts 12 and 13 underwent this fluorination exclusively or almost so. Both bulky N-fluoropyridinium triflates 2 and 7 preferentially attacked the 6-position of the conjugated vinyl ester of a steroid from the unhindered β-direction to give a thermally unstable 6β-fluoro isomer. On the basis of these results, N-fluoropyridinium salts may be concluded to constitute a system that can serve as a source of the most ideal fluorinating agents for conducting desired selective fluorination through fluorinating capacity or structural alteration.

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