(6,6)-PHENYL C61 BUTYRIC ACID METHYL ESTER, >99%
(6,6)-PHENYL C61 BUTYRIC ACID METHYL ESTER, >99%
  • CAS No.:160848-22-6
Other grades of this product :
(6,6)-PHENYL C61 BUTYRIC ACID METHYL ESTER, >99% Basic information
Applications
Product Name:(6,6)-PHENYL C61 BUTYRIC ACID METHYL ESTER, >99%
Synonyms:[6,6]-Phenyl C61 butyric acid Methyl ester >99.5%;PCBM(C60);(6,6)-Phenyl C61 Butyric Methyl Ester, [60]PCBM;[6,6]-Phenyl C61 butyric acid methyl ester >99.9%;PCBM, [60]PCBM, PC61BM;(6,6)-PHENYL C61 BUTYRIC ACID METHYL ES&;Methyl [6.6]-Phenyl-C61-butyrate;[6,6]PCBM
CAS:160848-22-6
MF:C72H14O2
MW:910.88
EINECS:
Product Categories:olde Materials;OTFT/OFET/OPV Materials
Mol File:160848-22-6.mol
(6,6)-PHENYL C61 BUTYRIC ACID METHYL ESTER, >99% Chemical Properties
Melting point 292 °C
density 2.50
storage temp. Keep in dark place,Inert atmosphere,Room temperature
solubility chlorobenzene: soluble
form powder to crystal
color Dark green to Dark red to Black
CAS DataBase Reference160848-22-6
EPA Substance Registry System3'H-Cyclopropa[1,9][5,6]fullerene-C60-Ih-3'-butanoic acid, 3'-phenyl-, methyl ester (160848-22-6)
Safety Information
Safety Statements 24/25
WGK Germany 3
HS Code 29163990
MSDS Information
(6,6)-PHENYL C61 BUTYRIC ACID METHYL ESTER, >99% Usage And Synthesis
ApplicationsPCBM is a solubilised version of the buckminsterfullerene, C60, and is one of the most commonly used electron accepting materials in organic photovoltaic devices. The solubility enables PCBM to be dissolved in common solvents used for donor polymers, allowing the simultaneous casting of polymer and fullerene and the formation of an efficient bulk heterojunction. When used in a device with a donor polymer, PCBM enables rapid and efficient charge transfer and exciton dissociation, and has a high electron mobility. The 99% purity PCBM is recommended for general OPV use, and the 99.5% purity PCBM is recommended for OFET applications where the highest crystallisation and mobility is required.
DescriptionPCBM is a solubilised version of the buckminsterfullerene, C60, and is one of the most commonly used electron accepting materials in organic photovoltaic devices. The solubility enables PCBM to be dissolved in common solvents used for donor polymers, allowing the simultaneous casting of polymer and fullerene and the formation of an efficient bulk heterojunction. When used in a device with a donor polymer, PCBM enables rapid and efficient charge transfer and exciton dissociation , and has a high electron mobility [2].
Uses[60]PCBM is an n-type semi-conductor widely used as an electron transport material with low cost and high surface area in different energy based applications like organic photovoltaics (OPVs), perovskite solar cells (PSCs), field effect transistors (FETs) and photodetectors.
General Description[6,6]-Phenyl C61?butyric acid methyl ester ([60]PCBM) is a methanofullerene that has a better diffusion in organic molecules than fullerenes (C60). It has high electron mobility, which allows it to be used as an electron acceptor in major electrochemical applications.
(6,6)-PHENYL C61 BUTYRIC ACID METHYL ESTER, >99% Preparation Products And Raw materials
Raw materialsBenzenepentanoic acid, δ-[2-[(4-methylphenyl)sulfonyl]hydrazinylidene]-, methyl ester

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