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酞菁

最大吸收波长:689(THF) nm
    级别和纯度:
  • ≥93%(N)
有货

库存信息

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库存信息

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库存信息

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货号 (SKU) 包装规格 是否现货 价格 数量
P160721-1g
1g 现货 Stock Image
P160721-5g
5g 现货 Stock Image
P160721-25g
25g 现货 Stock Image

基本描述

别名 颜料蓝 16 | 29H,31H-酞菁
英文别名 HSDB 4350 | 5,28-Dihydro-29H,31H-phthaloCyanine | Phthalocyanine (purified by sublimation) [for organic electronics] | PHTHALOCYANINE [HSDB] | UNII-V5PUF4VLGY | EC 209-378-3 | Phthalocyanin | YSWG725 | AKOS015912687 | Lionol Blue KW | NCGC00259070-01 | PH
规格或纯度 ≥93%(N)
英文名称 Phthalocyanine
储存温度 避光
运输条件 常规运输
产品介绍

Pthalocyanine is a common macrocylic blue-green dye. It is also used as a suitable laser dye metal. Phthalocyanines have long been examined as catalysts for redox reactions. Areas of interest are the oxygen reduction reaction and the sweetening of gas streams by removal of hydrogen sulfide. Phthalocyanine compounds have been investigated as donor materials in molecular electronics.


纯度 ≥93%(N)

作用机制

作用机制 Action Type target ID Target Name Target Type Target Organism Binding Site Name 参考文献

名称和识别符

PubChem SID 488202414
分子类型 小分子
IIUPAC Name 2,11,20,29,37,38,39,40-octazanonacyclo[28.6.1.13,10.112,19.121,28.04,9.013,18.022,27.031,36]tetraconta-1,3,5,7,9,11,13,15,17,19(39),20,22,24,26,28,30(37),31,33,35-nonadecaene
INCHI 1S/C32H18N8/c1-2-10-18-17(9-1)25-33-26(18)38-28-21-13-5-6-14-22(21)30(35-28)40-32-24-16-8-7-15-23(24)31(36-32)39-29-20-12-4-3-11-19(20)27(34-29)37-25/h1-16H,(H2,33,34,35,36,37,38,39,40)
InChi Key IEQIEDJGQAUEQZ-UHFFFAOYSA-N
Smiles C1=CC=C2C(=C1)C3=NC4=NC(=NC5=C6C=CC=CC6=C(N5)N=C7C8=CC=CC=C8C(=N7)N=C2N3)C9=CC=CC=C94
Isomeric SMILES C1=CC=C2C(=C1)C3=NC4=NC(=NC5=C6C=CC=CC6=C(N5)N=C7C8=CC=CC=C8C(=N7)N=C2N3)C9=CC=CC=C94
分子量 514.55
Reaxy-Rn 15026350
Reaxys-RN link address https://www.reaxys.com/reaxys/secured/hopinto.do?context=S&query=IDE.XRN=15026350&ln=

化学和物理性质

溶解性 Insoluble in water.
密度 1.44
敏感性 对光线敏感
熔点 >300 °C
分子量 514.500 g/mol
XLogP3 6.400
氢键供体数Hydrogen Bond Donor Count 2
氢键受体数Hydrogen Bond Acceptor Count 6
可旋转键计数Rotatable Bond Count 0
精确质量Exact Mass 514.165 Da
单同位素质量Monoisotopic Mass 514.165 Da
拓扑极表面积Topological Polar Surface Area 109.000 Ų
重原子数Heavy Atom Count 40
形式电荷Formal Charge 0
复杂度Complexity 777.000
同位素原子数Isotope Atom Count 0
定义的原子立体中心计数Defined Atom Stereocenter Count 0
未定义的原子立体中心计数Undefined Atom Stereocenter Count 0
定义的键立体中心计数Defined Bond Stereocenter Count 0
未定义的键立体中心计数Undefined Bond Stereocenter Count 0
所有立体化学键的总数The total count of all stereochemical bonds 0
共价键合单元计数Covalently-Bonded Unit Count 1

安全和危险性(GHS)

预防措施声明

P264: 处理后要彻底洗手。

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批号(Lot Number) 证书类型 货号
I2126271 分析证书 P160721
C2526807 分析证书 P160721
C2517506 分析证书 P160721
H2421423 分析证书 P160721
H2421425 分析证书 P160721
H2421424 分析证书 P160721
L2418698 分析证书 P160721
I2523550 分析证书 P160721
I2523552 分析证书 P160721
I2523551 分析证书 P160721
C2422083 分析证书 P160721
F2209218 分析证书 P160721
F2209241 分析证书 P160721
F2210157 分析证书 P160721
D2325173 分析证书 P160721
D2325189 分析证书 P160721

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此产品的引用文献

引用文献

1. Cao Peike, Quan Xie, Nie Xiaowa, Zhao Kun, Liu Yanming, Chen Shuo, Yu Hongtao, Chen Jingguang G..  (2023)  Metal single-site catalyst design for electrocatalytic production of hydrogen peroxide at industrial-relevant currents.  Nature Communications,  14  (1): (1-12).  [PMID:36635287] [10.1038/s41467-023-35839-z]
2. Menghui Chen, Yongting Chen, Jialin Cai, Zhili Yang, Meihua Tang, Joey Chung-Yen Jung, Shengli Chen, Jiujun Zhang, Shiming Zhang.  (2023)  Multi-sites synergistic modulation in oxygen reduction electrocatalysis.  JOURNAL OF COLLOID AND INTERFACE SCIENCE,  629  (697).  [PMID:36099839] [10.1016/j.jcis.2022.09.008]
3. Yueqi Li, Minjuan Cai, Bingbing Ji, Feng Wu, Li-Zhi Huang.  (2022)  Pyridinic nitrogen enables dechlorination of trichloroethylene to acetylene by green rust: Performance, mechanism and applications.  SCIENCE OF THE TOTAL ENVIRONMENT,  824  (153825).  [PMID:35157856] [10.1016/j.scitotenv.2022.153825]
4. Kejun Chen, Maoqi Cao, Ganghai Ni, Shanyong Chen, Hanxiao Liao, Li Zhu, Hongmei Li, Junwei Fu, Junhua Hu, Emiliano Cortés, Min Liu.  (2022)  Nickel polyphthalocyanine with electronic localization at the nickel site for enhanced CO2 reduction reaction.  APPLIED CATALYSIS B-ENVIRONMENTAL,  306  (121093).  [10.1016/j.apcatb.2022.121093]
5. Yilin Huang, Weidong Xue, Xingwang Hou, Rui Zhao.  (2021)  Metal Oxide/Nitrogen-Doped Carbon Nanosheet Heteronanostructures as Highly Efficient Electromagnetic Wave Absorbing Materials.  MOLECULES,  26  (24): (7537).  [PMID:34946620] [10.3390/molecules26247537]
6. Yangke Long, Jian Dai, Shiyin Zhao, Yiping Su, Zhongying Wang, Zuotai Zhang.  (2021)  Atomically Dispersed Cobalt Sites on Graphene as Efficient Periodate Activators for Selective Organic Pollutant Degradation.  ENVIRONMENTAL SCIENCE & TECHNOLOGY,  55  (8): (5357–5370).  [PMID:33729757] [10.1021/acs.est.0c07794]
7. Qingshan Zhao, Xiaojie Tan, Tianwen Ma, Fengliang Cao, Zhengzheng Xia, Hui Liu, Hui Ning, Zhongtao Li, Han Hu, Mingbo Wu.  (2021)  Reinforced atomically dispersed FeNC catalysts derived from petroleum asphalt for oxygen reduction reaction.  JOURNAL OF COLLOID AND INTERFACE SCIENCE,  587  (810).  [PMID:33248699] [10.1016/j.jcis.2020.11.040]
8. Xiao-Cheng Liu, Chuan-Shu He, Zi-Yang Shen, Wen-Qiang Li, Ning Chen, Jun-Sheng Song, Xiao-Guo Zhou, Yang Mu.  (2020)  Mechanistic study of Fe(III) chelate reduction in a neutral electro-Fenton process.  APPLIED CATALYSIS B-ENVIRONMENTAL,  278  (119347).  [10.1016/j.apcatb.2020.119347]
9. Chen Jin-ping, Zhang Xue-song.  (2018)  Phosphorous Phthalocyanine Analogues as Degradable Corrosion Inhibitor of Mild Steel in 1 mol/L HCl.  TRANSACTIONS OF THE INDIAN INSTITUTE OF METALS,  71  (5): (1113-1126).  [10.1007/s12666-017-1247-y]
10. Yangke Long, Guicong Xiao, Jian Dai, Yanyun Chen, Hua-Yue Zhu, Dan Peng, Huosheng Li.  (2025)  Efficacy and durability of cobalt sulfide nanoparticles and axial sulfur-coordinated cobalt single-atom composite sites in hydrogenative nitroaromatics decontamination.  JOURNAL OF COLLOID AND INTERFACE SCIENCE,  684  (540).  [PMID:39805216] [10.1016/j.jcis.2025.01.049]
11. Sheng Li, Wentong Fan, Qiulin Chen, Xinfeng Zhang.  (2024)  Facile Light-Driven Synthesis of Highly Luminous Sulfur Quantum Dots for Fluorescence Sensing and Cell Imaging.  ACS Applied Materials & Interfaces,  16  (31): (41281-41292).  [PMID:39074383] [10.1021/acsami.4c05739]
12. Zhongliang Huang, Qi Xiao, Tianyi Ding, Jing Xia, Changhong Zhan, Xiangmin Meng, Chih-Wen Pao, Zhiwei Hu, Wei-Hsiang Huang, Yingru Wang, Nanjun Chen, Liang Cao, Xiaoqing Huang.  (2025)  Interfacial metal–coordinated bifunctional PtCo for practical fuel cells.  Science Advances,  (11(10)).  [PMID:40053591] [10.1126/sciadv.adt4914]
13. Shanlei Chang, Kai Rong, Yuchen Wang, Zhixuan Yu, Junfeng Zhai, Hongwei Tian, Youxing Fang, Shaojun Dong.  (2024)  Polymerizable deep eutectic solvent enables flexible gel formation for motion sensor and anti-UV film.  CHEMICAL ENGINEERING JOURNAL,  499  (156597).  [10.1016/j.cej.2024.156597]
14. Weiting Yu, Zhe Yang, Rendan Zhu, Mengzhi Lu, Tingjiang Lu, Yan Yu, Shuang Song.  (2024)  Suppression of hydrogen evolution reaction in CO2 reduction by functionalizing Ag-decorated Si electrode with phthalocyanine.  SEPARATION AND PURIFICATION TECHNOLOGY,  343  (127080).  [10.1016/j.seppur.2024.127080]
15. Xiaoyu Chu, Xinrui Wang, Shuo Tian, Yongkuo Zhao, Shikai Liu, Hong Yan, Yan Shang.  (2024)  Synthesis of Iron Phthalocyanine/CeO2 Z-scheme nanocomposites as efficient photocatalysts for degradation of 2, 4-chlorophenol.  DALTON TRANSACTIONS,  [PMID:39136079] [10.1039/D4DT01271B]

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