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CAS:623-66-5 | N-CAPRYLIC ANHYDRIDE

CAS:623-66-5 | N-CAPRYLIC ANHYDRIDE

Molecular Formula:C16H30O3
Molecular Weigh:270.41
EINECS:210-806-6
Package:25g 100g 500g
Worldwide Delivery
Made in China

Product Introduction

Introduction of CAS:623-66-5 | N-CAPRYLIC ANHYDRIDE

 

Octanoic anhydride can be synthesized by reacting acetic or propionic anhydrides with various fatty acids . Three processes are generally employed to produce mixed anhydrides industrially: the reaction of a carboxylic acid with a ketene, the reaction between an acyl chloride with a carboxylic acid salt, and the reaction of a symmetric anhydride with a carboxylic acid .

 

Specification of CAS:623-66-5 | N-CAPRYLIC ANHYDRIDE

 

ITEMS

SPECIFICATION

Density

1.509±0.06 g/cm3(Predicted)

Boiling point

180 °C / 20mmHg

Density

0,91 g/cm3

Form

transparency liquid

Color

Colorless to pale yellow

Storage condition

Inert atmosphere,Room Temperature

 

Research Application of CAS:623-66-5 | N-CAPRYLIC ANHYDRIDE

 

Hydrogenation of Carboxylic Acids : A study by Nagayama et al. (2001) demonstrated the hydrogenation of various carboxylic acids, including octanoic acid, into aldehydes using palladium complexes as catalysts (Nagayama, Shimizu, & Yamamoto, 2001).

 

Acylation of Cellulose and Lignocellulosic Wastes : Vaca-Garcia and Borredon (1999) explored the mixed acylation of cellulose with fatty acids and acetic anhydride, optimizing parameters for reactions with octanoic acid (Vaca-Garcia & Borredon, 1999).

 

Screening for Octanoic Acid Production in Yeast : Baumann et al. (2021) used a high-throughput screening approach to detect new genetic targets that increased octanoic acid titers in Saccharomyces cerevisiae, a significant step in sustainable biofuel production (Baumann, Bruder, Kabisch, Boles, & Oreb, 2021).

 

 

Epoxy Coatings Curing Agent : Wazarkar and Sabnis (2018) synthesized a cardanol-based di-anhydride curing agent for epoxy coatings, demonstrating its effectiveness in comparison to conventional curing agents (Wazarkar & Sabnis, 2018).

 

Hydrophobic Cellulose-based Materials : Pintiaux et al. (2015) investigated high-pressure molding as a technique for esterification of octanoic acid on cellulose, leading to the production of water-resistant cellulose materials (Pintiaux, Laourine, Vaca-Medina, Rouilly, & Peydecastaing, 2015).

 

Salicylate-derived Poly(anhydride-ester) Microspheres : Yeagy et al. (2006) explored the formation and degradation of salicylate-based poly(anhydride-esters), including poly[1,8-bis(o-carboxyphenoxy)octanoate], for potential drug delivery applications (Yeagy, Prudencio, Schmeltzer, Uhrich, & Cook, 2006).

 

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