[Ir{dFCF3ppy}2(bpy)]PF6 Powder Description
[Ir{dFCF3ppy}2(bpy)]PF6 Powder is an iridium-based compound widely
utilized for its superior catalytic properties in organic synthesis, OLED
technology, and photochemistry research. The complex structure of this iridium
catalyst ensures high stability and effectiveness, particularly under demanding
conditions. With exceptional quantum yields and photoluminescent efficiency, it
is frequently employed as an emitter material in OLED displays and lighting
applications. This material exhibits robust stability and high reactivity,
enabling precise catalytic reactions in laboratory and industrial environments.
[Ir{dFCF3ppy}2(bpy)]PF6 Powder Applications
Organic Light-Emitting Diodes (OLEDs): Used as efficient
emissive layers due to excellent electroluminescent properties.
Photochemical Research: Utilized in research for its
photostability and high quantum efficiency in photocatalytic reactions.
Catalysis: Acts as an effective catalyst in organic
synthesis, including complex catalytic transformations and homogeneous
catalysis.
[Ir{dFCF3ppy}2(bpy)]PF6 Powder Packing
Stanford Advanced Materials ensures careful handling and
packing to maintain product purity and stability.
Packaging:
Vacuum-sealed bags or bottles (1g, 5g, 10g per package)
Storage:
Store under inert atmosphere, avoid moisture and exposure to direct sunlight.
Frequently Asked Questions
What
is the primary use of [Ir{dFCF3ppy}2(bpy)]PF6 Powder?
It is primarily used as a catalyst in OLEDs, photochemical reactions, and
various organic synthesis processes.
How
should [Ir{dFCF3ppy}2(bpy)]PF6 Powder be stored?
It should be stored in a cool, dry, inert atmosphere, away from moisture and
direct sunlight to maintain stability and purity.
Is
[Ir{dFCF3ppy}2(bpy)]PF6 Powder stable under normal conditions?
Yes, it is stable when handled under inert gas conditions, away from oxidizing
agents and moisture.
What
safety measures should be taken when handling [Ir{dFCF3ppy}2(bpy)]PF6 Powder?
Handle the powder with proper personal protective equipment (PPE), such as
gloves, goggles, and a laboratory coat, in a well-ventilated laboratory hood to
avoid inhalation or direct contact.
Can
[Ir{dFCF3ppy}2(bpy)]PF6 Powder be customized according to specific research
needs?
Yes, Stanford Advanced Materials offers customization services regarding
particle size, purity, and packaging to accommodate specialized research
requirements.