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(6,6)-PHENYL C61 BUTYRIC ACID METHYL ESTER

CAS NO.:160848-22-6

Purity: ≥99.5%

Appearance:Brown-black powder

 

Product name (6,6)-PHENYL C61 BUTYRIC ACID METHYL ESTER
Synonym

[6,6]-PhenylC61butyricacidMethylester>99.5%;PCBM(C60);(6,6)-PhenylC61ButyricMethylEster,[60]PCBM;[6,6]-PhenylC61butyricChemicalbookacidmethylester>99.9%;PCBM,[60]PCBM,PC61BM;(6,6)-PHENYLC61BUTYRICACIDMETHYLES&;Methyl[6.6]-Phenyl-C61-butyrate;[6,6]PCBM

CAS NO. 160848-22-6
Appearance Brown-black powder
Purity 99.5%
MF C72H14O2
MW 910.88
Related categories OLED Materials
Storage Keep in dark place,sealed in dry,room temperature
Transport Information Non-dangerous goods
HS Code(in China) 2916 3990.90
Contact information Name:Echo Liu
E-mail:echo@coreychem.com

🌟 Product Application of (6,6)-Phenyl C61 Butyric Acid Methyl Ester 🌟

⚡ Organic Photovoltaics (OPVs)

It is widely used in organic photovoltaics, where it plays a key role as an electron acceptor. 🌞 Its unique molecular structure allows it to enhance the efficiency and stability of solar cells by facilitating rapid charge transfer and reducing energy losses. Researchers and engineers rely on this compound to develop high-performance, next-generation solar energy devices. Its excellent solubility in organic solvents makes it easy to process in various photovoltaic formulations, enabling more flexible design of thin-film solar cells.

🧪 Organic Semiconductors & Molecular Electronics

In the field of organic semiconductors and molecular electronics, this fullerene derivative is highly valued for its ability to improve charge mobility and device reliability. 💡 It can be incorporated into transistors, diodes, and other electronic components, where it enhances performance by providing stable electron transport pathways. Its consistent molecular purity ensures reproducible results, making it a favorite choice for both academic research and industrial applications.

🌿 Nanotechnology & Advanced Materials

Thanks to its chemical stability and solubility, (6,6)-Phenyl C61 Butyric Acid Methyl Ester is also widely used in nanotechnology, optoelectronics, and advanced material science. ✨ It serves as a building block for creating nanostructured materials, energy storage devices, and innovative electronic systems. Scientists use it to explore novel material properties, such as enhanced conductivity, improved thermal stability, and tunable optical features, enabling cutting-edge developments in material engineering.

💎 Key Benefits

  • High purity and reproducible quality ensure reliable experimental outcomes 🌟

  • Excellent chemical and thermal stability for long-term applications 🌿

  • Compatible with a variety of organic solvents and processing methods 🧪

  • Improves electron mobility, device efficiency, and stability in electronic applications ⚡

  • Broadly applied in photovoltaics, semiconductors, nanotechnology, and advanced materials

✨ Summary

Overall, (6,6)-Phenyl C61 Butyric Acid Methyl Ester is a versatile and indispensable compound for researchers, engineers, and material scientists. Its unique fullerene structure, high stability, and excellent electron-accepting properties make it ideal for a wide range of applications, from cutting-edge photovoltaics to innovative nanotechnologies. Researchers can leverage this compound to explore new possibilities in energy conversion, electronic devices, and material innovation, making it a core component in modern material science research. 🌈

●Product Manager Email: Echo@coreychem.com

Packaging:

Sample: 1g/bag
Bulk: Customized packaging available upon request.

 

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