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CAS:16840-84-9 | 10-NONADECANOL

CAS:16840-84-9 | 10-NONADECANOL

Molecular Formula:C19H40O
Molecular Weigh:284.52
EINECS:240-864-8
Package:50g 100g 500g
Worldwide Delivery
Made in China

Product Introduction

Introduction of CAS:16840-84-9 | 10-NONADECANOL

 

Miltenburg, Oonk, and Ventolà (2001) explored the thermodynamic functions of 1-nonadecanol (C19H40O), among other linear alcohols, providing detailed insights into their molar heat capacities and derived absolute entropies. These findings are vital for understanding the physical behaviors of these substances in various temperatures, which is crucial for their application in material science and engineering.

 

A study by Omrani et al. (2016) synthesized bio-based plasticizers from oleic acid, including derivatives related to 1-nonadecanol. These plasticizers were evaluated for their performance in Poly(vinyl chloride) (PVC) formulations, providing an eco-friendly alternative to traditional plasticizers. This research highlights the potential of 10-Nonadecanol and its derivatives in sustainable material manufacturing.

 

Specification of CAS:16840-84-9 | 10-NONADECANOL

 

ITEMS

SPECIFICATION

Boiling point

357°C (estimate)

Density

0.8528 (estimate)

Refractive index

1.4357 (estimate)

Purity

95%

 

Research Application of CAS:16840-84-9 | 10-NONADECANOL

Polymorphism and Phase Transitions

Ventolà, Ramírez, Calvet, Solans, Cuevas-Diarte, N., Mondieig, and Oonk (2002) investigated the polymorphism of 1-nonadecanol, examining its structural behavior through X-ray diffraction, differential scanning calorimetry, and other spectroscopic techniques. Understanding these phase transitions is crucial for applications in materials science and pharmaceuticals (Ventolà et al., 2002).

Ice Nucleation Properties

Knopf and Forrester (2011) studied the ice nucleation properties of water and aqueous NaCl droplets coated with 1-nonadecanol, revealing significant insights into the freezing temperatures and nucleation rates. Such research is pivotal in understanding atmospheric processes and could have implications in climate modeling (Knopf & Forrester, 2011).

Applications in Packaging Materials

Canellas, Nerín, Moore, and Silcock (2010) identified non-volatile compounds, including 1-nonadecanol, as potential migrants from adhesives used in food packaging materials. This research is crucial in assessing the safety and chemical stability of packaging materials in contact with food (Canellas et al., 2010).

Polymer Precursors from Natural Oils

Furst, Goff, Quinzler, Mecking, Botting, and Cole-Hamilton (2012) explored the production of polymer precursors, including 1,19-nonadecanol, from natural oils. Their work provides a foundation for developing biodegradable polymers and aligns with the growing trend of sustainable material science (Furst et al., 2012).

Vapor Pressure and Thermodynamics

Albinsaad, Scott, and Chickos (2021) investigated the vapor pressures and vaporization enthalpies of 1-nonadecanol. This information is essential for the chemical industry, particularly in processes involving distillation and purification (Albinsaad, Scott, & Chickos, 2021).

Biolubricant Applications

Salimon, Salih, and Yousif (2012) conducted research on the use of oleic acid derivatives, including compounds related to 1-nonadecanol, for biolubricant applications. Their findings contribute to the development of environmentally friendly lubricants (Salimon, Salih, & Yousif, 2012).

Microencapsulation and Supercooling

Zhang, Fan, Tao, and Yick (2005) studied the microencapsulation of n-alkanes including n-nonadecane and the prevention of supercooling, contributing to the understanding of phase change materials for thermal energy storage (Zhang, Fan, Tao, & Yick, 2005).

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