Copper(II) Phthalocyanine (CuPc): High-Purity Material for OLEDs and Organic Photovoltaics

Discover the advanced properties of CuPc, a critical component for next-generation organic electronic devices.

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Key Advantages of CuPc

Enhanced Device Efficiency

CuPc's HOMO and LUMO energy levels are well-aligned with common organic electronic architectures, facilitating efficient charge transport for superior device performance in OLEDs and OPVs.

Superior Stability and Durability

As a chemically stable organometallic compound, CuPc contributes to the longevity and reliability of electronic devices, particularly in demanding applications like perovskite solar cells.

Versatile Electronic Applications

From light-emitting diodes to organic photovoltaics, CuPc demonstrates broad utility as a p-type semiconductor, enabling advancements across various optoelectronic technologies.

Key Applications

Organic Light-Emitting Diodes (OLEDs)

CuPc serves as a critical hole injection layer material, significantly improving the efficiency and reducing the operating voltage of OLED devices.

Organic Photovoltaics (OPVs)

As an electron donor, CuPc is used in conjunction with fullerene derivatives for efficient energy conversion in vacuum-deposited organic solar cells.

Perovskite Solar Cells

CuPc is integrated as a hole-transporting layer or electron-blocking layer to enhance the stability and performance of hybrid perovskite solar cells.

Other Optoelectronic Devices

The photoconductivity and catalytic activity of CuPc also make it valuable for use in sensors and other advanced electronic components.