Unlock Advanced Electronics with Fluoro-Indenylidene Malononitrile

A key building block for high-efficiency organic solar cells and optoelectronic applications.

Get a Quote & Sample

Key Product Advantages

Enhanced Electron Deficiency

Leverage the electron deficient nature of this molecule to improve charge transport properties in organic electronic devices, contributing to higher overall efficiency.

NIR Absorption Extension

Utilize this compound to facilitate the synthesis of materials that absorb light further into the near-infrared spectrum, capturing more solar energy.

High Purity and Reliability

Count on the consistent quality and high purity (>97%) of this chemical intermediate for reproducible and successful research and manufacturing outcomes.

Key Applications

Non-Fullerene Acceptor Synthesis

A primary use is in the synthesis of advanced NFAs, crucial for improving the performance and efficiency of organic solar cells.

OLED Materials

Serves as a valuable building block for developing new materials used in Organic Light-Emitting Diodes (OLEDs), contributing to brighter and more efficient displays.

Chemical Synthesis

Acts as a versatile chemical intermediate in various organic synthesis pathways, enabling the creation of complex molecules for diverse applications.

Optoelectronic Materials

Its unique properties make it suitable for research and development in a broad range of optoelectronic materials, pushing the boundaries of device performance.