Introduction of CAS:41130-29-4 | oleylamine hydrochloride
Oleylamine hydrochloride (OAH) is a chemical compound composed of a hydrochloride salt of oleylamine, an organic compound derived from oleic acid. It is a white, odorless, crystalline powder with a melting point of around 100°C. OAH is used in a variety of scientific research and laboratory experiments, and has a range of biochemical and physiological effects.
Oleylamine hydrochloride plays a pivotal role in various fields of scientific research, notably in nanomaterial synthesis, surface functionalization, biomedical applications, and renewable energy technologies.
Specification of CAS:41130-29-4 | oleylamine hydrochloride
|
ITEMS |
SPECIFICATION |
|
Melt point |
161-165 °C |
|
Molecular Formula |
C18H38ClN |
|
Molecular Weight |
303.95402 |
|
EINECS |
255-233-2 |
|
Purity |
98% |
Related Articles of CAS:41130-29-4 | oleylamine hydrochloride
1. Materials Synthesis
Oleylamine is extensively utilized in the synthesis of nanomaterials and metal-halide perovskites. The purification of oleylamine and its beneficial effects on materials synthesis, particularly in the formation of clear solutions with lead halides, have been documented. This process is significant in the development of advanced materials and offers insights into the interactions and properties of these materials (Baranov et al., 2019).
2. Nanoparticle Synthesis
Oleylamine plays a crucial role as a surfactant, solvent, and reducing agent in the synthesis of various metallic, metal-oxide, and semiconductor nanoparticles. Its ability to form complex compounds with metal ions leads to the creation of stable and dispersible nanoparticles, significantly impacting the field of nanoparticle technology (Mourdikoudis & Liz‐Marzán, 2013).
3. Surface Functionalization of Nanocrystals
Oleylamine is critical in the surface modification of inorganic nanocrystals (NCs) for broader applications, such as in biomedicine. By facilitating covalent linking with other molecules, oleylamine aids in transferring hydrophobic NCs into water, enhancing their functionalization and stability (Liu et al., 2017).
4. Solar Cell Applications
Oleylamine has been applied as a passivating layer for polycrystalline silicon solar cells, demonstrating an increase in efficiency. This usage highlights its potential in renewable energy technologies, although its stability remains a challenge (Shinde et al., 2016).


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