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Hexyl phenylcarbamate is a chemical compound with the molecular formula C13H19NO2. It is an ester derived from phenol and hexanoic acid, featuring a carbamate functional group. This organic compound is characterized by a hexyl chain attached to a phenyl ring through a urethane linkage. It is used in various applications, including as a fragrance ingredient in the perfume industry, due to its pleasant scent. Additionally, hexyl phenylcarbamate has been studied for its potential as a pesticide or insecticide, although its use in these applications is not widespread. The compound is generally considered to be stable and non-reactive under normal conditions, but like many chemicals, it should be handled with care due to potential health and environmental concerns.

7461-26-9

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7461-26-9 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 7461-26-9 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 7,4,6 and 1 respectively; the second part has 2 digits, 2 and 6 respectively.
Calculate Digit Verification of CAS Registry Number 7461-26:
(6*7)+(5*4)+(4*6)+(3*1)+(2*2)+(1*6)=99
99 % 10 = 9
So 7461-26-9 is a valid CAS Registry Number.

7461-26-9SDS

SAFETY DATA SHEETS

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

Version: 1.0

Creation Date: Aug 16, 2017

Revision Date: Aug 16, 2017

1.Identification

1.1 GHS Product identifier

Product name hexyl N-phenylcarbamate

1.2 Other means of identification

Product number -
Other names HEXYL PHENYLCARBAMATE

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:7461-26-9 SDS

7461-26-9Downstream Products

7461-26-9Relevant academic research and scientific papers

Effects of Concentrations in Isocyanat-Alcohol-Systems

Thiele, Lothar

, p. 875 - 882 (1992)

The reaction between aromatic isocyanate and alcohol in nonpolar solvents at different alcohol and isocyanate concentrations and the effect of the presence of urethane in this solution at the start of the reaction have been examined.The results indicate that the rate constants of the observed second-order equation are dependent on the concentration of the reactants and of the urethane. Keywords.Association of alcohol and urethane; Spontaneous reaction; Urethane formation.

Triton-B catalyzed, efficient, one-pot synthesis of carbamate esters from alcoholic tosylates

Chaturvedi, Devdutt,Ray, Suprabhat

, p. 459 - 463 (2006)

A novel process for the one-step chemoselective conversion of a variety of alcoholic tosylates into carbamates serving as protected amines was developed using benzyltrimethylammonium hydroxide (Triton-B) in the presence of gaseous carbon dioxide. Thus car

Photo-on-Demand Synthesis of Chloroformates with a Chloroform Solution Containing an Alcohol and Its One-Pot Conversion to Carbonates and Carbamates

Liang, Fengying,Suzuki, Yuto,Tsuda, Akihiko,Yanai, Masaki

supporting information, (2020/04/21)

Chloroformates are key reagents for synthesizing carbonates and carbamates. The present study reports a novel photo-on-demand in situ synthesis of chloroformates with a CHCl3 solution containing a primary alkyl alcohol. It further allowed the one-pot synthesis of carbonates and carbamates through subsequent addition of alcohols or amines, respectively.

Efficient preparation of carbamates by Rh-catalysed oxidative carbonylation: unveiling the role of the oxidant

Iturmendi, Amaia,Iglesias, Manuel,Munárriz, Julen,Polo, Victor,Pérez-Torrente, Jesús J.,Oro, Luis A.

supporting information, p. 404 - 407 (2017/01/03)

The synthesis of a wide variety of carbamates from amines, alcohols and carbon monoxide has been achieved by means of a Rh-catalysed oxidative carbonylation reaction that uses Oxone as a stoichiometric oxidant. In-depth studies on the reaction mechanism shed light on the intimate role of Oxone in the catalytic cycle.

Synthesis of Amines, Carbamates and Amides by Multi-Step Continuous Flow Synthesis

Sagandira, Cloudius R.,Watts, Paul

supporting information, p. 6554 - 6565 (2017/10/09)

We report the continuous flow synthesis of acyl azides in various continuous flow systems and demonstrate that liquid–liquid separation may be incorporated to prepare anhydrous solutions of the acyl azide, which may be subsequently reacted with appropriate nucleophiles to prepare amines, carbamates and amides within a fully integrated multi-step process in high yields (> 80 %). Interesting effects were also observed when preparing carbamates with long chain alcohols, whereby as the chain length of the alcohol increased the products could be made in high yield even without incorporation of the liquid–liquid separation module.

(4-Arylsulfamoyl)phenylcarbamic acid esters: I. Synthesis and activity against herpes viruses

Krutikov,Erkin,Tets,Shmarov

, p. 1567 - 1573 (2016/08/26)

Aiming to modify the biological activity of sulfonamides, a number of alkyl (4-arylsulfamoyl)- phenylcarbamates were prepared in 50–70% yield. Biological screening showed that the target compounds possessed a high activity against herpes viruses as well as a traditional antibiotic one.

Selenium-catalyzed oxidative carbonylation of aniline and alcohols to n-phenylcarbamates

Zhang, Xiaopeng,Jing, Huanzhi,Zhang, Guisheng

experimental part, p. 1614 - 1624 (2010/07/09)

A facile one-pot, phosgene-free synthesis of N-phenylcarbamates is demonstrated. Catalyzed by selenium, oxidative carbonylation of aniline with alcohols in the presence of carbon monoxide and oxygen affords the corresponding N-phenylcarbamates, mostly in fair to good yields. Selenium can be easily recovered because of its phase-transfer catalysis function. Copyright

Reactions of Aryl Isocyanates with Alcohols

Bacaloglu, R.,Cotarca, L.,Marcu, N.,Toelgyi, St.

, p. 428 - 434 (2007/10/02)

The reaction of aryl isocyanates with alcohols has been kinetically studied as a model reaction for polyurethane formation under conditions similar to those of industrial scale production.Considering the isocyanate and alcohol structure, kinetic isotopic effect, activation enthalpy and entropy and solvent effects it has been found that the most probable mechanism is the alcohol addition through a four-membered cyclic transition state.

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