The product we are introducing is (6,6)-phenyl c71 butyric acid methyl ester with a purity of 99%. Its CAS number is 609771-63-3. This product is factory - supplied, which ensures a stable supply and high - quality control. The "Factory Supply" means that it comes directly from the production source, reducing intermediate costs and allowing us to offer it at the best price.
Chemically, (6,6)-phenyl c71 butyric acid methyl ester is a derivative of fullerene C71. The addition of the phenyl and butyric acid methyl ester groups modifies the chemical and physical properties of the original fullerene, making it more soluble in some organic solvents and more reactive in certain chemical reactions.
1. Organic Photovoltaic Cells: In the field of renewable energy, (6,6)-phenyl c71 butyric acid methyl ester is widely used as an electron acceptor in organic photovoltaic cells (OPVs). It can effectively accept electrons from the donor material in the OPV device, improving the efficiency of charge separation and collection, and thus enhancing the overall power conversion efficiency of the solar cell.
2. Organic Field - Effect Transistors (OFETs): This compound can also be applied in OFETs. It participates in the charge - transport process in the device, helping to improve the mobility of charge carriers and the performance of OFETs, such as enhancing the on - off ratio and response speed.
3. Chemical Research: As a reactive fullerene derivative, it serves as an important building block in organic synthesis. Chemists can use it to prepare various functional materials through chemical reactions, exploring new chemical structures and properties.
1. Handling Precautions: When handling (6,6)-phenyl c71 butyric acid methyl ester, appropriate personal protective equipment (PPE) should be worn, including gloves and safety glasses. It should be operated in a well - ventilated area to avoid inhalation of dust or vapors.
2. Solubility: This product is soluble in some common organic solvents such as toluene, chlorobenzene, and o - dichlorobenzene. When using it, it can be first dissolved in a suitable solvent at an appropriate concentration according to the specific application requirements.
3. Reaction Conditions: In chemical reactions, the reaction temperature, reaction time, and the amount of reactants need to be strictly controlled. For example, in the preparation of OPV devices, the spin - coating speed, annealing temperature, and other parameters also have a significant impact on the performance of the final product.
1. Organic Photovoltaic Cell Case: A research team used (6,6)-phenyl c71 butyric acid methyl ester as an electron acceptor in a bulk - heterojunction OPV device. They first dissolved the product in chlorobenzene at a concentration of 20 mg/mL. After spin - coating on a pre - treated indium tin oxide (ITO) substrate, followed by annealing at 120°C for 10 minutes, the power conversion efficiency of the fabricated OPV device reached 8.5%, which was significantly higher than that of devices using other electron - acceptor materials.
2. Chemical Synthesis Case: In a synthetic chemistry laboratory, chemists used (6,6)-phenyl c71 butyric acid methyl ester as a starting material to synthesize a new type of fullerene - based sensor material. Through a series of reactions, including ester hydrolysis and coupling reactions, they successfully obtained the target product. This new sensor material showed high sensitivity and selectivity for detecting certain metal ions in solution.
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