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| SKU | Size | Availability |
Price | Qty |
|---|---|---|---|---|
|
P400139-25mg
|
25mg |
Available within 8-12 weeks(?)
Production requires sourcing of materials. We appreciate your patience and understanding.
|
$236.90
|
|
|
P400139-100mg
|
100mg |
2
|
$755.90
|
|
|
P400139-500mg
|
500mg |
2
|
$1,950.90
|
|
| Synonyms | [60]PCBM | Methyl [6,6]-Phenyl-C61-butyrate | D91578 | FT-0686908 | [6,6]-Phenyl-C61-butyric Acid Methyl Ester [for organic electronics] | (6,6)-Phenyl C61 butyric acid methyl ester | PC61BM | (6,6)-Phenyl C61 butyricacidmethylester;[6,6]-Phenyl-C61-butyr |
|---|---|
| Specifications & Purity | ≥99.5% |
| Storage Temp | Protected from light,Argon charged |
| Pubchem Sid | 488201591 |
|---|---|
| Pubchem Sid Url | https://pubchem.ncbi.nlm.nih.gov/substance/488201591 |
| Isomeric SMILES | COC(=O)CCCC1(C23C14C5=C6C7=C8C5=C9C1=C5C%10=C%11C%12=C%13C%10=C%10C1=C8C1=C%10C8=C%10C%14=C%15C%16=C%17C(=C%12C%12=C%17C%17=C%18C%16=C%16C%15=C%15C%10=C1C7=C%15C1=C%16C(=C%18C7=C2C2=C%10C(=C5C9=C42)C%11=C%12C%10=C%177)C3=C16)C%14=C%138)C1=CC=CC=C1 |
| WGK Germany | 3 |
| Molecular Weight | 910.88 |
| Reaxy-Rn | 15873127 |
| Reaxys-RN_link_address | https://www.reaxys.com/reaxys/secured/hopinto.do?context=S&query=IDE.XRN=15873127&ln= |
Find and download the COA for your product by matching the lot number on the packaging.
| Lot Number | Certificate Type | Date | Item |
|---|---|---|---|
| Certificate of Analysis | Sep 01, 2022 | P400139 | |
| Certificate of Analysis | Sep 01, 2022 | P400139 | |
| Certificate of Analysis | Sep 01, 2022 | P400139 | |
| Certificate of Analysis | Sep 01, 2022 | P400139 |
| Sensitivity | light sensitive |
|---|---|
| Molecular Weight | 910.900 g/mol |
| XLogP3 | 18.300 |
| Hydrogen Bond Donor Count | 0 |
| Hydrogen Bond Acceptor Count | 2 |
| Rotatable Bond Count | 6 |
| Exact Mass | 910.099 Da |
| Monoisotopic Mass | 910.099 Da |
| Topological Polar Surface Area | 26.300 Ų |
| Heavy Atom Count | 74 |
| Formal Charge | 0 |
| Complexity | 4190.000 |
| Isotope Atom Count | 0 |
| Defined Atom Stereocenter Count | 0 |
| Undefined Atom Stereocenter Count | 2 |
| Defined Bond Stereocenter Count | 0 |
| Undefined Bond Stereocenter Count | 0 |
| The total count of all stereochemical bonds | 0 |
| Covalently-Bonded Unit Count | 1 |
| 1. Yuan-Sheng Cheng, Yi-Fei Huang, Xin-Yue Wu, Min Ling, Yuwen Cheng, Fang-Hui Wu, Qiyan Xu, Xian-Wen Wei. (2024) Construction of synergistic active sites on MoS2 basal plane by interfacing with C60 derivative for enhanced photocatalytic hydrogen evolution coupled with biomass alcohol conversion. APPLIED SURFACE SCIENCE, 649 (159166). |
| 2. Jianfeng Ding, Xinying Liu, Shun Zhou, Junyi Huang, Yaqing Li, Yueyue Gao, Chen Dong, Gentian Yue, Furui Tan. (2024) In-situ free-standing inorganic 2D Cs2PbI2Cl2 nanosheets for efficient self-powered photodetectors with carbon electrode. JOURNAL OF COLLOID AND INTERFACE SCIENCE, 654 (1356). |
| 3. Zhang Changhai, Wang Hairui, Liu Zeyang, Zhang Tiandong, Tang Chao, Liu Xianli, Chi Qingguo. (2023) Enhanced breakdown strength and energy storage density of PMMA/PVDF blends by coating superficial layers and doping organic fillers. JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS, 34 (23): (1-13). |
| 4. Chuanqi Liu, Wen Zhang, Dingyu Yang, Haibo Tian, Jun Zhu. (2023) Sr-Doping All-Inorganic CsPbBr3 Perovskite Thick Film for Self-Powered X-ray Detectors. Materials, 16 (5): (1783). |
| 5. Changhai Zhang, Tongqin Zhang, Mengjia Feng, Yang Cui, Tiandong Zhang, Yongquan Zhang, Yu Feng, Yue Zhang, Qingguo Chi, Xianli Liu. (2021) Significantly Improved Energy Storage Performance of PVDF Ferroelectric Films by Blending PMMA and Filling PCBM. ACS Sustainable Chemistry & Engineering, 9 (48): (16291–16303). |
| 6. Yi Ding, Yan Wu, Ying Tian, Yuzeng Xu, Minna Hou, Bo Zhou, Jingshan Luo, Guofu Hou, Ying Zhao, Xiaodan Zhang. (2021) Effects of guanidinium cations on structural, optoelectronic and photovoltaic properties of perovskites. Journal of Energy Chemistry, 58 (48). |
| 7. Chaorong Wu, Yinyi Huang, Shuo Wang, Xu Miao, Ruixin Ma, Chengyan Wang. (2020) Phytate modifies the hole transport layer and assists in blade coating to prepare efficient perovskite solar cells. SOLAR ENERGY, 203 (25). |
| 8. Feng Huang, Jing Zhou Li, Zhu Hua Xu, Yuan Liu, Ri Peng Luo, Si Wei Zhang, Peng Bo Nie, Yan Fei Lv, Shi Xi Zhao, Wei Tao Su, Wen Di Li, Shi Chao Zhao, Guo Dan Wei, Hao Chung Kuo, Fei Yu Kang. (2019) A Bilayer 2D-WS2/Organic-Based Heterojunction for High-Performance Photodetectors. Nanomaterials, 9 (9): (1312). |
| 9. Yu Zhu, Shuo Wang, Ruixin Ma, Chengyan Wang. (2019) The improvement of inverted perovskite solar cells by the introduction of CTAB into PEDOT:PSS. SOLAR ENERGY, 188 (28). |
| 10. Jiankai Zhang, Wujian Mao, Xian Hou, Jiaji Duan, Jianping Zhou, Sumei Huang, Wei Ou-Yang, Xuehua Zhang, Zhuo Sun, Xiaohong Chen. (2018) Solution-processed Sr-doped NiOx as hole transport layer for efficient and stable perovskite solar cells. SOLAR ENERGY, 174 (1133). |
| 11. Xin Wang, Yao Wu, Guanwen Li, Jun Wu, XiaoBing Zhang, Qing Li, Baoping Wang, Jing Chen, Wei Lei. (2018) Ultrafast Ionizing Radiation Detection by p–n Junctions Made with Single Crystals of Solution-Processed Perovskite. Advanced Electronic Materials, 4 (11): (1800237). |
| 12. Wanyuan Li, Baiyao Liu, Leyan Ou, Gangzhou Li, Dapeng Lei, Ze Xiong, Huihua Xu, Jizhuang Wang, Jinyao Tang, Dan Li. (2024) Arbitrary Construction of Versatile NIR-Driven Microrobots. ADVANCED MATERIALS, 36 (33): (2402482). |
| 13. Minhui Zhu, Daomin Min, Shihang Wang, Yihang Jiang. (2025) Highly insulating LDPE compounds at high temperature: The effect of electron-withdrawing PCBM on DC dielectric properties. POLYMER, 320 (128052). |
| 14. Shilong He, Binbin Wang, Peisong Wang, Yaowu Wang, Yujie Cheng, Yueyue Lv, Yao Li. (2024) Interfacial defects passivation and energy level alignment with small molecule pyridine material for efficient and stable inverted perovskite solar cells. Surfaces and Interfaces, 46 (104031). |
| 15. Guo Zexuan, Wang Nan, Fei Xiaomiao, Yang Feng, Zhao Man, Zhang Xiaolan, Peng Yanyan, Zhang Jing, Jiang Dayong. (2024) Ultraviolet–visible photodetectors based on surface plasmon-polymer coupled inorganic/organic thin film heterojunction. JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS, 35 (35): (1-11). |