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CAS:14318-66-2 | 3-METHOXY-N-METHYLANILINE

CAS:14318-66-2 | 3-METHOXY-N-METHYLANILINE

Molecular Formula:C8H11NO
Molecular Weigh:137.18
EINECS:238-259-9
Package:5g 10g 25g
Worldwide Delivery
Made in China

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Product Introduction

Introduction of CAS:14318-66-2 | 3-METHOXY-N-METHYLANILINE

 

Various studies have explored the chemical reactions and properties of related compounds. For example, Mahata et al. (2003) investigated the use of a similar compound in the synthesis of heterocycles, which can provide insights into the reactivity of 3-Methoxy-N-methylaniline (Mahata et al., 2003).

 

Studies like those conducted by Nogueira et al. (1995) on poly(o-methoxyaniline) give an understanding of the physical properties, such as electrical conductivity, which can be related to 3-Methoxy-N-methylaniline (Nogueira et al., 1995).

 

The chemical properties of 3-Methoxy-N-methylaniline can be inferred from studies on similar compounds. For instance, Viva et al. (2002) examined the electropolymerization of 2-methoxyaniline, providing insights into the chemical behavior of methoxyaniline derivatives (Viva et al., 2002).

 

Specification of CAS:14318-66-2 | 3-METHOXY-N-METHYLANILINE

 

ITEMS

SPECIFICATION

Refractive index

n20/D 1.5690(lit.)

Boiling point

239-240 °C(lit.)

Density

1.049 g/mL at 25 °C(lit.)

Flash point

>230 °F

 

Research Application of CAS:14318-66-2 | 3-METHOXY-N-METHYLANILINE

 

Medicinal Chemistry and Pharmacology

Synthesis of antibacterial compounds using derivatives of 3-Methoxy-N-methylaniline. These compounds showed potent activity against Gram-positive bacteria and protected mice from lethal infections (Zhi et al., 2005).

Use in antitumor agents. Derivatives of 3-Methoxy-N-methylaniline exhibited in vivo solid tumor activity, indicating potential as cancer therapeutics (Atwell et al., 1986).

Development of novel indicators for water analysis and their applications in environmental and health research (Zayed & Eladly, 2018).

 

Materials Science

Investigation into the photoelectrochemistry and spectroscopy of substituted polyanilines, including derivatives of 3-Methoxy-N-methylaniline, for potential use in electronic applications (Kilmartin & Wright, 1999).

Synthesis and characterization of dye intermediates containing 3-Methoxy-N-methylaniline for use in fine chemicals and materials industry (Bo, 2007).

Development of chemically modified electrodes using ortho-methylaniline and ortho-methoxyaniline for potential applications in sensors and analytical devices (Lindino & Bulhões, 1996).

 

Environmental Science

Research on the kinetics and products of the reaction of OH radicals with 3-Methoxy-N-methylaniline derivatives, contributing to understanding atmospheric chemistry and environmental impact (Aschmann et al., 2011).

Investigation of the transformation of anilines, including 3-Methoxy-N-methylaniline, by bacteria, providing insights into bioremediation and environmental degradation processes (Paris & Wolfe, 1987).

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