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CAS:78137-76-5 | 4-Bromo-3-Nitrophenol

CAS:78137-76-5 | 4-Bromo-3-Nitrophenol

Molecular Formula:C6H4BrNO3
Molecular Weigh:218
Purity:98%
Package:100g 500g 1kg
Worldwide Delivery
Made in China

Product Introduction

 

Introduction of CAS:78137-76-5 | 4-Bromo-3-nitrophenol

 

4-Bromo-3-nitrophenol is a chemical compound that has been the subject of various studies due to its potential applications in different fields such as medicine, agriculture, and organic synthesis. The compound is characterized by the presence of a bromine atom and a nitro group attached to a phenol ring, which significantly influences its reactivity and physical properties.

 

Specification of CAS:78137-76-5 | 4-Bromo-3-nitrophenol

 

ITEMS

SPECIFICATION

Melt point

144-145 ºC

Density

1.881

Boiling point

281 ºC

Purity

98%

storage condition

under inert gas (nitrogen or Argon) at 2-8°C

 

Research Application of CAS:78137-76-5 | 4-Bromo-3-nitrophenol

 

Ion-Pair HPLC Method for Quantitation

A study by Almási, Fischer, and Perjési (2006) developed an ion-pair high-performance liquid chromatography (HPLC) method for the simultaneous determination of 4-nitrophenol and its conjugates in rat small intestine luminal perfusion experiments. This method is significant for its efficiency in studying the metabolic profile of 4-nitrophenol in animal studies, particularly regarding drug metabolism under various physiological conditions (Almási, Fischer, & Perjési, 2006).

 

Photochemical Reactions

Bell and Wang (2015) explored the complex spatiotemporal behavior in the photosensitive ferroin-bromate-4-nitrophenol reaction. Their study provides insights into the nonlinear behavior of this reaction under various conditions, which is relevant for understanding the dynamics of photochemical reactions in industrial and environmental contexts (Bell & Wang, 2015).

 

Biodegradation in Wastewater Treatment

Tomei and Annesini (2005) studied the biodegradation of 4-nitrophenol in a sequential batch reactor, providing insights into the kinetics of biological oxidation and denitrification. This research is crucial for the development of effective wastewater treatment technologies capable of removing toxic xenobiotics like 4-nitrophenol (Tomei & Annesini, 2005).

 

Electrochemical Detection in Environmental Water Samples

Balasubramanian, Balamurugan, Chen, and Chen (2019) reported on the development of an electrochemical sensor for the detection of 4-nitrophenol in environmental water samples. This study highlights the advancement in analytical tools for monitoring toxic organic emissions, emphasizing the importance of rapid and sensitive detection methods (Balasubramanian et al., 2019).

Graphene-Based Sensor for Detection

He, Tian, Wu, Liu, Li, Deng, and Chen (2019) developed a graphene-based sensor for the detection of 4-nitrophenol. This innovative approach to pollutant detection offers potential applications for monitoring environmental contaminants (He et al., 2019).

Assembly of Composite Nanocones for Detection and Degradation

Chakraborty et al. (2021) reported the synthesis of composite nanocones for the electrochemical detection and photodegradation of 4-nitrophenol. This study represents a significant advancement in the field of nanotechnology for environmental applications (Chakraborty et al., 2021).

 

Quantum Dot-Based Sensor for Water Contamination

 

Anh, Chang, and Doong (2019) developed a sulfur-doped graphene quantum dot-based sensor for the detection of 4-nitrophenol in contaminated water. This innovative approach highlights the potential of nanomaterials in environmental monitoring (Anh, Chang, & Doong, 2019).

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