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CAS:69669-44-9 | DODECYLBENZENESULFONIC ACID SODIUM SALT

CAS:69669-44-9 | DODECYLBENZENESULFONIC ACID SODIUM SALT

Molecular Formula:C18H29NaO3S
Molecular Weight:348.48
EINECS:274-070-8
Package:500g 5kg 25kg
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Product Introduction

Introduction of CAS:69669-44-9 | DODECYLBENZENESULFONIC ACID SODIUM SALT

 

Benzenesulfonic acid, C10-14-alkyl derivs., sodium salts, is an important class of organic compounds with a wide range of applications in both industrial and scientific research applications. Benzenesulfonic acid, C10-14-alkyl derivs., sodium salts are used as catalysts, surfactants, and detergents, as well as in the production of polymers and polysaccharides. The compounds are also used as intermediates in the synthesis of other compounds, including drugs and pharmaceuticals. In addition, benzenesulfonic acid, C10-14-alkyl derivs., sodium salts have been studied extensively for their biochemical and physiological effects. , sodium salts.

 

Specification of CAS:69669-44-9 | DODECYLBENZENESULFONIC ACID SODIUM SALT

 

ITEMS

SPECIFICATION

CAS

69669-44-9

Purity

95%

Soluble

almost transparency

Color

light yellow

Form

powder

 

Research Application of CAS:69669-44-9 | DODECYLBENZENESULFONIC ACID SODIUM SALT

 

Photolytic Oxidation Applications

 

Benzenesulfonic acid and its derivatives show promising results in photolytic oxidation processes. A study demonstrated that in the presence of sodium hypochlorite, benzenesulfonic acid undergoes complete photolysis, yielding carbon dioxide and sulfuric acid. This process also leads to the formation of various compounds such as alkylbenzene, alkylphenol, and arylalkyl alcohol, indicating its potential in chemical synthesis and environmental applications (Nakamura & Ogata, 1977).

 

Electropolymerization and Electronic Structure

Benzenesulfonic acid derivatives play a significant role in electropolymerization processes. An ab initio and experimental study on p-benzenesulfonic acid derivatives, including sodium salt, examined their electronic structures to understand electrooxidation and electrode surface modification. This research highlights the impact of the alkyl side chain on electronic structure, crucial for their applications in electrochemistry and material science (Nabais et al., 2004).

 

Surfactant Properties and Applications

The dynamic interfacial properties of hydroxy-substituted alkyl benzenesulfonates, including sodium 2-hydroxy-3-decyl-5-octylbenzenesulfonate, were extensively studied. These compounds demonstrate significant potential in surfactant applications due to their unique surfactant conformation and surface layer arrangement, important for various industrial applications, particularly in cleaning products and emulsifiers (Huang et al., 2007).

 

Cool Storage System Enhancement

Research on the crystallization process of gas hydrate HCFC141b revealed that benzenesulfonic acid sodium salt significantly improves the formation rate of gas hydrates, making it a valuable additive in cool storage systems. This application is particularly relevant in air conditioning engineering, demonstrating the compound's utility in energy management and storage (Bi et al., 2006).

 

Development of Ion-Selective Membranes

The synthesis of certain derivatives of benzenesulfonic acid, such as 2,3,4-tris(11'-methacryloylundecyl-1'-oxy)benzenesulfonic acid and its sodium salt, has been explored for their potential in creating ion-selective membranes. These compounds can form ordered phases that preform potential ion-transport channels, which are crucial for applications in filtration and separation technologies (Zhu et al., 2006).

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