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CAS:6540-99-4 | POLYOXYETHYLENE 10 LAURYL ETHER

CAS:6540-99-4 | POLYOXYETHYLENE 10 LAURYL ETHER

Molecular Formula:C32H66O11
Molecular Weight:626.86
Package:5g 25g 100g
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Product Introduction

Introduction of CAS:6540-99-4 | POLYOXYETHYLENE 10 LAURYL ETHER

 

3,6,9,12,15,18,21,24,27,30-Decaoxadotetracontan-1-ol, or 3,6-DODT, is a polyhydroxyalkanoate (PHA) that has been studied for its potential applications in biodegradable polymers, drug delivery, and tissue engineering. It is a polyester that can be synthesized from a variety of sources, including microbial fermentation and chemical synthesis. 3,6-DODT has been widely studied due to its unique properties, such as its biodegradability, biocompatibility, and non-toxic nature.

 

Specification of CAS:6540-99-4 | POLYOXYETHYLENE 10 LAURYL ETHER

 

ITEMS

SPECIFICATION

Molecular Formula

C32H66O11

Molecular Weight

626.86

LogP

1.820 (est)

CAS

6540-99-4

Research Application of CAS:6540-99-4 | POLYOXYETHYLENE 10 LAURYL ETHER

 

Synthesis and Characterization

 

In the field of synthetic organic chemistry, studies have shown the synthesis of complex organic compounds, including those with similar structures to 3,6,9,12,15,18,21,24,27,30-Decaoxadotetracontan-1-ol. For example, the synthesis and characterization of S-3-(1-hydroxylpentyl)cysteine and S-3-(1-hydroxylpentyl)glutathione were performed, contributing to the understanding of complex organic structures (Chenot, Robiette, & Collin, 2019).

 

Electrochemical Applications

 

In electrochemistry, research involving the synthesis of aluminium(III) alkoxides from various alcohols, including those structurally similar to 3,6,9,12,15,18,21,24,27,30-Decaoxadotetracontan-1-ol, demonstrates the potential of these compounds in the development of new materials and catalysts (Singh, Bala, Singh, & Singh, 2009).

 

Analytical Chemistry

 

The use of nuclear magnetic resonance and high-resolution mass spectrometry in the analysis of complex organic compounds, similar to 3,6,9,12,15,18,21,24,27,30-Decaoxadotetracontan-1-ol, has been explored. These methods are crucial for detailed structural elucidation and understanding of chemical properties (Wilson et al., 1996).

 

Phase Behavior Studies

 

Studies on the phase behavior of binary systems containing alcohols and ionic liquids provide insights into the solubility and miscibility of complex alcohols. This research is significant for applications in separation processes and material science (Domańska & Marciniak, 2007).

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