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Organic electroluminescent materials

來(lái)源:Seebio.cn作者:西寶生物人氣:-發(fā)表時(shí)間:2012-03-01 13:04:17【
A great increase in demand for sleek, stylish, fat panel displays (FPD) has intensified research into improving current technology and developing cutting-edge next generation displays. Currently, the liquid crystal display (LCD) and the plasma display panel (PDP) are the mainstream technologies utilized for a variety of applications. Research into new technologies for the development of next generation displays has focused on the research and technical development of organic electroluminescence (EL) devices. In an EL device, fluorescent organic compounds are excited by the application of an electric field to obtain an emission of light. This area has been rapidly progressing ever since the report of a multilayer EL device in 1987. The organic EL device is expected to be the FPD device of the future, having features such as being a self-emitting device, high brightness, high efficiency, direct current low-voltage operation, and high-speed response. Today, some organic EL devices are beginning to be put into commercial use in mobile phones, in-vehicle displays, as well as other applications. The following is a view showing the frame format for a typical organic EL device.
An organic EL device has a structure in which a transparent anode (ITO electrode), hole transport layer, emitter layer, and cathode (Mg, Al electrode) are sequentially stacked on a glass substrate, as shown above. The light emission occurs by a mechanism in which a hole is first injected toward the hole transport layer from the anode, then an electron is injected toward the emitter layer from the cathode. Subsequently, the hole and the electron recombine in the emitter layer to excite the emitter layer, which results in light emission during the return of the emitter layer to the ground state.
Various technological improvements are being made, with the goal of making the device more efficient. For example, a hole injection layer is inserted between the anode and the hole transport layer, in order to promote hole injection efficiency from the anode. In addition, an electron injection layer and an electron transport layer are inserted between the cathode and the emitter layer, in order to promote electron injection and transport efficiency. Furthermore, efforts to tune the emission wavelengths are being conducted through the use of doping dyes in the emitter layer.
In addition to the above mentioned low molecular weight compounds for use in organic EL devices, the use of polymers is also being heavily explored. Polymers are superior to low molecular weight compounds because they have better film-forming properties and more durability. Additional studies aimed at increasing the efficiency of light emission are being conducted by dispersing low-molecular weight compounds in polymer films.
Listed below are our products intended for use as materials in polymeric EL devices.

Compounds for EL Research

Product name

CAS number

Package

Purity

3-(2-Benzimidazolyl)-7-(diethylamino)coumarin

27425-55-4

1g

98%

3-(2-Benzothiazolyl)-7-(diethylamino)coumarin

38215-36-0

1g

98%

Bis[2-(2-benzothiazolyl)phenolato]zinc(II)

58280-31-2

1g
5g

98%

Bis[2-(2-benzoxazolyl)phenolato]zinc(II)

23467-27-8

5g

95%

2,5-Bis(5-tert-butyl-2-benzoxazolyl)thiophene

7128-64-5

5g
25g

98%

4,4'-Bis(9H-carbazol-9-yl)biphenyl

58328-31-7

1g
5g

98%

2,5-Bis(4-diethylaminophenyl)-1,3,4-oxadiazole

1679-98-7

25g

98%

1,1-Bis[4-[N,N-di(p-tolyl)amino]phenyl]cyclohexane

58473-78-2

1g
5g

98%

1,1-Bis[4-[N,N-di(p-tolyl)amino]phenyl]cyclohexane

58473-78-2

1g

99%

4,4'-Bis(5-methyl-2-benzoxazolyl)stilbene

2397-00-4

5g
25g

98%

Vinyl Carbazoles

Product name

CAS number

Package

Purity

9-Vinylcarbazole

1484-13-5

25g

98%

Poly(N-vinylcarbazole)

25067-59-8

5g
25g

 

Intermediates

Diphenylamines

Product name

CAS number

Package

Purity

Bis(4-biphenylyl)amine

102113-98-4

1g
5g

98%

Bis(4-bromophenyl)amine

16292-17-4

1g
5g

98%

Triphenylamines

Product name

CAS number

Package

Purity

Bis(4-formylphenyl)phenylamine

53566-95-3

1g

95%

4-Bromotriphenylamine

36809-26-4

5g
25g

97%

Arylamines

Product name

CAS number

Package

Purity

3-Aminobiphenyl

2243-47-2

1g
5g
25g

99%

N-Benzyl-2-naphthylamine

13672-18-9

5g
25g

98%

Aryl Halides

Product name

CAS number

Package

Purity

2-Bromobiphenyl

2052-07-5

5ml

97%

4-Bromo-4'-iodobiphenyl

105946-82-5

5g
25g

98%

Naphthalenes & Anthracenes

Product name

CAS number

Package

Purity

1-Aminoanthracene

610-49-1

1g

98%

1,4-Dibromonaphthalene

83-53-4

5g
25g

97%

Pyrenes

Product name

CAS number

Package

Purity

1-Bromopyrene

1714-29-0

5g
25g

94%

1-Aminopyrene

1606-67-3

1g
5g
25g

98%

Fluorenes,Carbazoles & Dibenzothiophenes

Product name

CAS number

Package

Purity

2-Aminofluorene

153-78-6

5g
25g

97%

2,7-Dibromocarbazole

136630-39-2

1g
5g

98%

2,8-Dibromodibenzothiophene

31574-87-5

1g
5g
25g

96%

Benzoxazoles & Benzothiazoles

Product name

CAS number

Package

Purity

2-(2-Hydroxyphenyl)benzothiazole

3411-95-8

5g
25g

98%

2-(2-Hydroxyphenyl)benzoxazole

835-64-3

1g
25g

98%

Quinolines

Product name

CAS number

Package

Purity

5-Chloro-8-hydroxyquinoline

130-16-5

25g
250g

98%

5,7-Dibromo-8-hydroxyquinoline

521-74-4

25g

98%

Phenanthrolines

Product name

CAS number

Package

Purity

Bathophenanthroline

1662-01-7

1g
5g

99%

2-Chloro-1,10-phenanthroline

7089-68-1

100mg
1g

98%

Propanediones

Product name

CAS number

Package

Purity

2,6-Dimethyl-3,5-heptanedione

18362-64-6

5g
25g

97%

Hexafluoroacetylacetone

1522-22-1

5g
25g

95%

Others

Product name

CAS number

Package

Purity

4,4'-Bis(diethylphosphonomethyl)biphenyl

17919-34-5

1g
5g

95%

4,7-Dibromo-2,1,3-benzothiadiazole

15155-41-6

1g
5g
25g

98%

Diethyl Benzylphosphonate

1080-32-6

25g

98%

Diethyl (3-Chlorobenzyl)phosphonate

78055-64-8

1g
5g

95%

3,4,9,10-Perylenetetracarboxylic Dianhydride

128-69-8

25g
500g

98%

 

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此文關(guān)鍵字:Organic electroluminescent materials