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22003-17-4

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22003-17-4 Usage

Description

(Phenylmethyl)-carbamic acid phenyl ester, also known as benzyl carbamate, is a chemical compound with the chemical formula C15H13NO2. It is a white crystalline solid at room temperature and is commonly used in the production of pharmaceuticals and as a pesticide. This ester of phenylmethyl carbamic acid is frequently utilized as an intermediate in the synthesis of various pharmaceuticals and serves as an inhibitor in different chemical reactions. Additionally, it is employed as a solvent in a range of applications. Given its potential toxicity, it is crucial to handle (Phenylmethyl)-carbamic acid phenyl ester with care and adhere to proper safety protocols.

Uses

Used in Pharmaceutical Industry:
(Phenylmethyl)-carbamic acid phenyl ester is used as an intermediate for the synthesis of various pharmaceuticals, contributing to the development of new medications and therapies.
Used in Pesticide Industry:
(Phenylmethyl)-carbamic acid phenyl ester is also utilized as a pesticide, highlighting its application in agriculture to protect crops from pests and ensure a stable food supply.
Used as a Chemical Reaction Inhibitor:
(Phenylmethyl)-carbamic acid phenyl ester serves as an inhibitor in various chemical reactions, playing a crucial role in controlling the rate and progress of these processes.
Used as a Solvent in Different Applications:
(Phenylmethyl)-carbamic acid phenyl ester is employed as a solvent in a range of applications, demonstrating its versatility and utility across different industries and processes.

Check Digit Verification of cas no

The CAS Registry Mumber 22003-17-4 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 2,2,0,0 and 3 respectively; the second part has 2 digits, 1 and 7 respectively.
Calculate Digit Verification of CAS Registry Number 22003-17:
(7*2)+(6*2)+(5*0)+(4*0)+(3*3)+(2*1)+(1*7)=44
44 % 10 = 4
So 22003-17-4 is a valid CAS Registry Number.
InChI:InChI=1/C14H13NO2/c16-14(17-13-9-5-2-6-10-13)15-11-12-7-3-1-4-8-12/h1-10H,11H2,(H,15,16)

22003-17-4SDS

SAFETY DATA SHEETS

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

Version: 1.0

Creation Date: Aug 17, 2017

Revision Date: Aug 17, 2017

1.Identification

1.1 GHS Product identifier

Product name phenyl N-benzylcarbamate

1.2 Other means of identification

Product number -
Other names phenyl benzylcarbamate

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:22003-17-4 SDS

22003-17-4Relevant articles and documents

A practical synthesis of carbamates using an 'in-situ' generated polymer-supported chloroformate

Mormeneo, David,Llebaria, Amadeu,Delgado, Antonio

, p. 6831 - 6834 (2004)

A versatile method for the synthesis of carbamates from an 'in-situ' generated polymer-supported chloroformate resin is presented. BTC (bis-trichloromethyl carbonate) is used as phosgene equivalent to afford a supported chloroformate, which, by sequential 'one-pot' reaction with a variety of alcohols and amines, furnishes the corresponding carbamates in high yields and purities. A versatile method for the synthesis of carbamates from an 'in-situ' generated polymer-supported chloroformate resin is presented. BTC (bis-trichloromethyl carbonate) is used as phosgene equivalent to afford a supported chloroformate, which, by sequential 'one-pot' reaction with a variety of alcohols and amines, furnishes the corresponding carbamates in high yields and purities.

Design, synthesis, and biological activity of novel semicarbazones as potent Ryanodine receptor1 inhibitors of Alzheimer's disease

Dai, Baozhu,Ma, Xingxing,Tang, Yadong,Xu, Le,Guo, Su,Chen, Xinyan,Lu, Shitong,Wang, Guangjie,Liu, Yajing

, (2020/12/09)

Ryanodine receptors (RyRs) are important ligand-gated Ca2+ channels; their excessive activation leads to Ca2+ leakage in the sarcoplasmic reticulum that may cause neurological diseases. In this study, three series of novel potent RyR1 inhibitors based on dantrolene and bearing semicarbazone and imidazolyl moieties were designed and synthesized, and their biological activity was evaluated. Using a single-cell calcium imaging method, the calcium overload inhibitory activities of 26 target compounds were tested in the R614C cell line, using dantrolene as a positive control. The preliminary investigation showed that compound 12a suppressed Ca2+ release as evidenced by store overload-induced Ca2+release (SOICR) (31.5 ± 0.1%, 77.2 ± 0.1%, 93.7 ± 0.2%) at 0.1 μM, 3 μM and 10 μM, respectively. Docking simulation results showed that compound 12a could bind at the active site of the RyR1 protein. The Morris water-maze test showed that compound 12a significantly improved the cognitive behavior of AD-model mice. Further studies on the structural optimization of this series of derivatives are currently underway in our laboratory.

Discovery of 3-((dimethylamino)methyl)-4-hydroxy-4-(3-methoxyphenyl)-N-phenylpiperidine-1-carboxamide as novel potent analgesic

Fu, Wei,Huang, Huoming,Li, Wei,Liu, Jinggen,Wang, Wenli,Wang, Yujun,Xu, Xuejun,Zhu, Chen

, (2020/01/28)

Management of moderate to severe pain by clinically used opioid analgesics is associated with a plethora of side effects. Despite many efforts have been dedicated to reduce undesirable side effects, moderate progress has been made. In this work, starting from Tramadol, a series of 3-((dimethylamino)methyl)-4-hydroxy-4-(3-methoxyphenyl)piperidine-1-carboxamide derivatives were designed and synthesized, and their in vitro and in vivo activities were evaluated. Our campaign afforded selective μ opioid receptor (MOR) ligand 2a (KiMOR: 7.3 ± 0.5 nM; KiDOR: 849.4 ± 96.6 nM; KiKOR: 49.1 ± 6.9 nM) as potent analgesic with ED50 of 3.1 mg/kg in 55 °C hot plate model. Its antinociception effect was blocked by opioid antagonist naloxone. High binding affinity toward MOR of compound 2a was associated with water bridge, salt bridge, hydrogen bond and hydrophobic interaction with MOR. The high selectivity of compound 2a for MOR over δ opioid receptor (DOR) and κ opioid receptor (KOR) was due to steric hindrance of compound 2a with DOR and KOR. 2a, a compound with novel scaffold, could serve as a lead for the development of novel opioid ligands.

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