OXC60TA

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OXC60TA – SOL5069 (o-Xylenyl C60 tris adduct)

OXC60TA is a high-performance electron acceptor derivative of fullerene C60 designed for high-efficiency organic photovoltaics (OPV). By utilizing a tris-adduct configuration, it significantly raises the LUMO level compared to standard PCBM. When paired with donor materials like P3HT (SOL4106), it enables the fabrication of solar cells with exceptionally high Open Circuit Voltage (Voc) and improved energy level alignment.

  • Purity: >97%

  • Key Benefit: Maximizes Voc in organic solar cells.

  • Solubility: Excellent in Toluene, Chlorobenzene, and o-Dichlorobenzene.

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Description

OXC60TA – SOL5069

CAS: 1426463-23-1 (or related isomers)

OXC60TA (tris-o-Xylenyl C60) is a high-performance electron acceptor derivative of fullerene C60. It is specifically engineered for use in organic photovoltaics (OPV) to provide a significantly higher Open Circuit Voltage (Voc) compared to standard PCBM or mono-adduct acceptors.

By increasing the number of xylenyl adducts on the C60 cage, the LUMO level is shifted upwards (closer to vacuum), which directly enhances the Voc when paired with donor polymers like P3HT (SOL4106).

Property Value
Acronyms OXC60TA, tris-oQDMC60, OXCTA
Chemical Name o-Xylenyl C60 tris adduct
Color and Texture Brown to dark brown powder
Molecular Weight 1033.09 g/mol
HOMO (eV) ~ -5.4 to -5.5 eV
LUMO (eV) ~ -3.50 eV
Solubility Toluene, Chlorobenzene, o-Dichlorobenzene

Applications and Performance

  • High Voc Devices: The tris-adduct configuration provides a greater LUMO offset than mono-adducts, typically pushing Voc values above 0.84V when used in a P3HT blend.

  • OPV Research: Ideal for studying the relationship between fullerene functionalization and energetic disorder in bulk heterojunction (BHJ) solar cells.

  • Processing: Highly soluble in common aromatic solvents, allowing for easy solution processing and film formation.

Note: Due to the multiple addition sites on the C60 cage, this material consists of a mixture of isomers which helps prevent over-crystallization and maintains excellent film morphology.


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Disclaimer: Products for Research and Development. Laboratory use only by qualified personnel.