Gallium acetylacetonate
Gallium acetylacetonate
Gallium acetylacetonate | |
Product No | NRE-30017 |
CAS | 14405-43-7 |
Purity | 99.99% |
APS | <40 micron |
Formula | [CH3COCH=C(O-)CH3]3Ga |
Molecular Weight | 367.05 g/mole |
Density | 2.50 |
Melting Point | 196-198 °C (dec.) (lit.) |
Boiling Point | NA |
Gallium acetylacetonate
Gallium acetylacetonate is a coordination compound of gallium with acetylacetonate ligands. This compound is utilized in various fields due to its unique chemical properties, including its role as a precursor in the synthesis of gallium-containing materials and its use in specialized applications.
Material Science and Thin Film Deposition
Semiconductor Manufacturing:
Deployment: Gallium acetylacetonate is used as a precursor in the chemical vapor deposition (CVD) process to produce gallium-containing thin films. These thin films are critical in the fabrication of semiconductor devices.
Applications: Gallium arsenide (GaAs) and gallium nitride (GaN) thin films used in electronic and optoelectronic devices, such as LEDs, laser diodes, and high-frequency electronics.
Organic Light-Emitting Diodes (OLEDs):
Deployment: Used in the synthesis of gallium-based compounds for OLED applications due to its ability to form stable and reactive organometallic compounds.
Applications: Light-emitting layers in OLEDs, where gallium-based materials contribute to the performance and efficiency of the device.
Catalysis
Chemical Catalysis:
Deployment: Gallium acetylacetonate serves as a catalyst or catalyst precursor in various chemical reactions. It can facilitate reactions by providing gallium ions in a controlled manner.
Applications: Catalytic processes in organic synthesis, such as the polymerization of organic monomers and the synthesis of fine chemicals.
Material Synthesis and Functionalization
Nanomaterial Fabrication:
Deployment: It is used in the synthesis of gallium-based nanoparticles and nanostructures, which are important for advanced materials with specific electronic, optical, or magnetic properties.
Applications: Nanomaterials for use in advanced electronics, sensors, and medical applications.
Surface Functionalization:
Deployment: Gallium acetylacetonate can be used to functionalize surfaces with gallium-containing compounds, enhancing properties such as adhesion, conductivity, or reactivity.
Applications: Surface coatings, modification of substrates for specific applications.
Optoelectronic Devices
Laser Diodes and Photodetectors:
Deployment: Gallium acetylacetonate is used to prepare gallium-based materials for optoelectronic devices, which require precise control over material composition and properties.
Applications: Laser diodes, photodetectors, and other optoelectronic components where gallium compounds are essential.