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864264-99-3

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864264-99-3 Usage

Description

2-(ChloroMethyl)-6-Methoxypyridine hydrochloride is a pyridine derivative with the molecular formula C7H8ClNO and a molar mass of 159.59 g/mol. It features a chloromethyl group and a methoxy group attached to the pyridine ring, making it a versatile intermediate in the synthesis of various chemical products.

Uses

Used in Pharmaceutical Industry:
2-(ChloroMethyl)-6-Methoxypyridine hydrochloride is used as a key intermediate in the synthesis of pharmaceuticals for its ability to be incorporated into the molecular structures of various drugs, enhancing their therapeutic properties and effectiveness.
Used in Agrochemical Industry:
2-(ChloroMethyl)-6-Methoxypyridine hydrochloride is used as a building block in the production of certain pesticides and herbicides, contributing to the development of more effective and targeted agricultural chemicals.
Used in Chemical Synthesis:
2-(ChloroMethyl)-6-Methoxypyridine hydrochloride is used as a versatile intermediate in the synthesis of a wide range of chemical compounds, leveraging its unique functional groups for the creation of new molecules with specific applications.
Safety and Handling:
2-(ChloroMethyl)-6-Methoxypyridine hydrochloride is typically handled and stored in accordance with standard safety procedures for organic compounds, due to its potential hazardous properties, ensuring the safety of workers and the environment.

Check Digit Verification of cas no

The CAS Registry Mumber 864264-99-3 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 8,6,4,2,6 and 4 respectively; the second part has 2 digits, 9 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 864264-99:
(8*8)+(7*6)+(6*4)+(5*2)+(4*6)+(3*4)+(2*9)+(1*9)=203
203 % 10 = 3
So 864264-99-3 is a valid CAS Registry Number.

864264-99-3SDS

SAFETY DATA SHEETS

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

Version: 1.0

Creation Date: Aug 14, 2017

Revision Date: Aug 14, 2017

1.Identification

1.1 GHS Product identifier

Product name 2-(Chloromethyl)-6-methoxypyridine hydrochloride

1.2 Other means of identification

Product number -
Other names 2-(chloromethyl)-6-methoxypyridine,hydrochloride

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:864264-99-3 SDS

864264-99-3Downstream Products

864264-99-3Relevant articles and documents

How Metal Ion Lewis Acidity and Steric Properties Influence the Barrier to Dioxygen Binding, Peroxo O-O Bond Cleavage, and Reactivity

Yan Poon, Penny Chaau,Dedushko, Maksym A.,Sun, Xianru,Yang, Guang,Toledo, Santiago,Hayes, Ellen C.,Johansen, Audra,Piquette, Marc C.,Rees, Julian A.,Stoll, Stefan,Rybak-Akimova, Elena,Kovacs, Julie A.

supporting information, p. 15046 - 15057 (2019/10/21)

Herein we quantitatively investigate how metal ion Lewis acidity and steric properties influence the kinetics and thermodynamics of dioxygen binding versus release from structurally analogous Mn-O2 complexes, as well as the barrier to Mn peroxo O-O bond cleavage, and the reactivity of Mn oxo intermediates. Previously we demonstrated that the steric and electronic properties of MnIII-OOR complexes containing N-heterocyclic (NAr) ligand scaffolds can have a dramatic influence on alkylperoxo O-O bond lengths and the barrier to alkylperoxo O-O bond cleavage. Herein, we examine the dioxygen reactivity of a new MnII complex containing a more electron-rich, less sterically demanding NAr ligand scaffold, and compare it with previously reported MnII complexes. Dioxygen binding is shown to be reversible with complexes containing the more electron-rich metal ions. The kinetic barrier to O2 binding and peroxo O-O bond cleavage is shown to correlate with redox potentials, as well as the steric properties of the supporting NAr ligands. The reaction landscape for the dioxygen chemistry of the more electron-rich complexes is shown to be relatively flat. A total of four intermediates, including a superoxo and peroxo species, are observed with the most electron-rich complex. Two new intermediates are shown to form following the peroxo, which are capable of cleaving strong X-H bonds. In the absence of a sacrificial H atom donor, solvent, or ligand, serves as a source of H atoms. With TEMPOH as sacrificial H atom donor, a deuterium isotope effect is observed (kH/kD = 3.5), implicating a hydrogen atom transfer (HAT) mechanism. With 1,4-cyclohexadiene, 0.5 equiv of benzene is produced prior to the formation of an EPR detected MnIIIMnIV bimetallic species, and 0.5 equiv after its formation.

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