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Cyclohexyl-<4-fluor-phenyl>-glykolsaeure, also known as 4-fluorophenyl cyclohexane carboxylate, is a chemical compound that features a cyclohexane ring and a 4-fluorophenyl group connected through a carboxylate functional group. Cyclohexyl-<4-fluor-phenyl>-glykolsaeure is characterized by its molecular formula C13H15FO3, with a molecular weight of approximately 234.25 g/mol. It is an organic ester that can be used in various chemical reactions and synthesis processes, particularly in the pharmaceutical and agrochemical industries. The presence of the fluorine atom in the phenyl ring can significantly influence the compound's reactivity and physical properties, making it a potentially valuable intermediate in the development of new drugs or other chemical products.

2262-18-2

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2262-18-2 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 2262-18-2 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 2,2,6 and 2 respectively; the second part has 2 digits, 1 and 8 respectively.
Calculate Digit Verification of CAS Registry Number 2262-18:
(6*2)+(5*2)+(4*6)+(3*2)+(2*1)+(1*8)=62
62 % 10 = 2
So 2262-18-2 is a valid CAS Registry Number.

2262-18-2Downstream Products

2262-18-2Relevant academic research and scientific papers

Intermolecular Radical Addition to Ketoacids Enabled by Boron Activation

Xie, Shasha,Li, Defang,Huang, Hanchu,Zhang, Fuyuan,Chen, Yiyun

supporting information, p. 16237 - 16242 (2019/10/14)

The intermolecular radical addition to the carbonyl group is difficult due to the facile fragmentation of the resulting alkoxyl radical. To date, the intermolecular radical addition to ketones, a valuable approach to construct quaternary carbon centers, remains a formidable synthetic challenge. Here, we report the first visible-light-induced intermolecular alkyl boronic acid addition to α-ketoacids enabled by the Lewis acid activation. The in situ boron complex formation is confirmed by various spectroscopic measurements and mechanistic probing experiments, which facilitates various alkyl boronic acid addition to the carbonyl group and prevents the cleavage of the newly formed C-C bond. Diversely substituted lactates can be synthesized from readily available alkyl boronic acids and ketoacids at room temperature merely under visible light irradiation, without any additional reagent. This boron activation approach can be extended to alkyl dihydropyridines as radical precursors with external boron reagents for primary, secondary, and tertiary alkyl radical additions. The pharmaceutically useful anticholinergic precursors are easily scaled up in multigrams under metal-free conditions in flow reactors.

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