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Merck
CN

546674

酞菁铜(II)

sublimed grade, Dye content 99 %

别名:

CuPc, 酞菁蓝, 颜料蓝 15

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关于此项目

经验公式(希尔记法):
C32H16CuN8
化学文摘社编号:
分子量:
576.07
EC Number:
205-685-1
UNSPSC Code:
12352103
NACRES:
NA.23
PubChem Substance ID:
MDL number:
Colour Index Number:
74160
Beilstein/REAXYS Number:
4121848
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产品名称

酞菁铜(II), sublimed grade, Dye content 99 %

InChI key

XCJYREBRNVKWGJ-UHFFFAOYSA-N

InChI

1S/C32H16N8.Cu/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;/q-2;+2

SMILES string

c1ccc2c(c1)C3=NC4=[N@@H]5C(=Nc6n7c(N=C8c9ccccc9C%10=[N@@H]8[Cu]57N3C2=N%10)c%11ccccc6%11)c%12ccccc4%12

grade

sublimed grade

composition

Dye content, 99%

λmax

678 nm

fluorescence

λem 404 nm

orbital energy

HOMO 5.2 eV 
LUMO 3.5 eV 

OLED device performance

ITO/CuPc/NPD/Alq3/C60/Mg:Ag

  • Color: green
  • Max. Luminance: 17200 Cd/m2

ITO/CuPc/NPD/Alq3/LiF/Al
  • Color: red
  • Max. Luminance: 2000 Cd/m2
  • Turn-On Voltage: 7.5 V

ITO/CuPc/NPD/CBP:FIrpic (6%)/BAlq3/LiF/Al
  • Color: blue
  • Max. EQE: 4.5 %

OPV device performance

ITO/CuPc/PTCDA/In

  • Short-circuit current density (Jsc): 53.1 mA/cm2
  • Open-circuit voltage (Voc): 0.57 V
  • Fill Factor (FF): 0.61
  • Power Conversion Efficiency (PCE): 4.2 %

ITO/PEDOT:PSS/CuPc/C60/BCP/Al
  • Short-circuit current density (Jsc): 18.8 mA/cm2
  • Open-circuit voltage (Voc): 0.58 V
  • Fill Factor (FF): 0.52
  • Power Conversion Efficiency (PCE): 3.6 %

application(s)

(Dyes for contact lenses)

Quality Level

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Application

CuPc是一种半导体材料,可用于各种光电设备,例如发光二极管(LED)、场效应晶体管(FET)和太阳能电池/有机光伏(OPV)。

General description

可根据要求追踪特定TGA / DSC批次
酞菁铜(CuPc)是一种金属酞菁染料,可作为p型半导体。它的电荷迁移率为10-4 cm2/Vs。它形成了化学性质稳定的薄膜,具有光电导性和催化活性。

存储类别

11 - Combustible Solids

wgk

nwg

flash_point_f

Not applicable

flash_point_c

Not applicable

ppe

Eyeshields, Gloves, type N95 (US)


历史批次信息供参考:

分析证书(COA)

Lot/Batch Number

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访问文档库

A facile molecularly engineered copper (II) phthalocyanine as hole transport material for planar perovskite solar cells with enhanced performance and stability
Yang G, et al.
Nano Energy, 31(1), 322-330 (2017)
Single-crystal field-effect transistors based on copper phthalocyanine
Zeis R, et al.
Applied Physics Letters, 86(2), 022103-022103 (2005)
Effects of substrate temperature on copper (II) phthalocyanine thin films
Jungyoon E, et al.
Applied Surface Science, 205(1-4), 274-279 (2003)
Organic light-emitting diodes with improved hole-electron balance by using copper phthalocyanine/aromatic diamine multiple quantum wells
Qiu Y, et al.
Applied Physics Letters, 80(15), 2628-2630 (2002)
Very-high-efficiency double-heterostructure copper phthalocyanine/C 60 photovoltaic cells
Peumans P and Forrest SR
Applied Physics Letters, 79(1), 126-128 (2001)

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