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triphenylamine cas 603 34 9-43

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Triphenylamine CAS 603-34-9

Ainm cheimiceach: Triphenylamine

Ainmneacha comhchiallacha:Three aniline;4-diphenylaminobenzene;amine,triphenyl

CAS Uimh: 603-34-9

Foirmle mhóilíneach:C18H15N

meáchan móilíneach: 245.32

EINECS Uimh: 210-035-5

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Foirmle struchtúrach:  

triphenylamine cas 603 34 9-50

Cur síos ar an Táirge:

Mír

Caighdeán

Torthaí Tástála

Caillteanas ar triomú

≤2.0%

0.19%

miotail throma

≤10 ppm

<10ppm

uisce

≤1.0%

0.10%

Fuinseog sulfáit

≤0.5% arna chinneadh ar 1.0 g.

0.01%

Iarmhar ar adhaint

≤0.1%

0.03%

Íonachta

≥ 99.0%

99.70%

 

Airíonna agus Úsáid:

Triphenylamine (CAS: 603-34-9) appears as white or light yellow crystalline powder. It has excellent electron transport properties and good structural modification capabilities.

1. Organic optoelectronic materials

OLED technology: Triphenylamine, as a hole transport material, can significantly improve the luminous efficiency and long-term stability of the device.

Organic solar cells: In photoelectric conversion equipment, it improves charge separation efficiency and promotes the development of high-performance solar cells.

Photosensitive components: used in advanced optoelectronic components such as photoresistors and photoconductors to support the development of precision optical equipment.

 

2. Dyes and Pigments Industry

Azo dyes and fluorescent dyes: Triphenylamine gives dyes high color fastness and bright color performance, and is suitable for the manufacture of photoluminescent materials.

Photosensitive dyes: As core raw materials in high-tech printing and light guide technology, they improve photoresponsiveness and material stability.

 

3. Modification of polymer materials

Heat-resistant and high-strength materials: Triphenylamine is used in modified polyimide, polyetherketone and other polymer materials to enhance their heat resistance, mechanical strength and stability.

Conductive polymer: Used to prepare polymer materials with conductive properties for use in energy storage devices such as batteries and supercapacitors.

 

4. Analysis and Catalysis

Analytical reagent: triphenylamine, a key reagent for detecting specific metal ions or chemical substances, provides precise tools for analytical chemistry.

Catalyst development: Used as a catalyst in special organic reactions to improve reaction efficiency and selectivity.

 

5. Laboratory and cutting-edge research

Research and development of new functional materials: Triphenylamine is a basic raw material for research in cutting-edge fields such as nonlinear optical materials and gas-sensitive materials.

Medicine and special materials: It plays an important structural modification role in the synthesis of pharmaceutical intermediates and special materials.

 

Coinníollacha stórála: Caomhnaigh i gcoimeádáin dea-dhúnta, éadrom-resistant agus aerdhíonach.

Pacáil: Tá an táirge seo pacáilte i drumaí cairtchláir 25kg, agus is féidir é a shaincheapadh freisin de réir riachtanais na gcustaiméirí

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