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鈣鈦礦材料 TQ1

簡要描述:Luminosyn™ polymer TQ1 is now available, featuring:



High molecular weight with high solubility and high purity - TQ1 polymer is purified by soxhlet extraction with methanol, hexane and chloroform

  • 更新時間:2024-06-04
  • 產(chǎn)品型號:
  • 廠商性質(zhì):生產(chǎn)廠家
  • 訪  問  量:1207

詳細(xì)介紹

Luminosyn™ polymer TQ1 is now available, featuring:

 

High molecular weight with high solubility and high purity - TQ1 polymer is purified by soxhlet extraction with methanol, hexane and chloroform under an argon atmosphere - polymer at its pure best

Batch-specific GPC data - for confidence in the reliability and consistency of your materials, and useful information for your thesis/publications

Larger-quantity orders - so that you can plan your experiments with polymers from the same batch

 

價格

Batch

Quantity

Price

M2076A1

100 mg

5747.69

M2076A1

250 mg

9889.88

M2076A1

500 mg

16504.54

M2076A1

1 g

28401.30

*for 5 - 10 grams order quantity, the lead time is 4-6 weeks.

 

Batch Details

Batch

Mw

Mn

PDI

M2076A1

150,244

61,571

2.44

 

General Information

Full name

Poly[[2,3-bis(3-octyloxyphenyl)-5,8-quinoxalinediyl]-2,5-thiophenediyl]

Synonyms

PTQ1

CAS number

565228-37-7

Chemical formula

(C40H46N2O2S)n

Molecular weight

See Batch Details table above

HOMO/LUMO

HOMO = - 5.70 eV, LUMO = - 3.30 eV [1]

Suggesting solvents

Chloroform, chlorobenzene, dichlorobenzene

Classification/Family

Quinoxaline heterocyclic five-membered ring, Organic semiconducting materials, Wide band-gap polymers, Organic photovoltaics, Polymer solar cells, OFETs

 

Chemical structure and product image of TQ1, CAS No. 565228-37-7.

 

Applications
TQ1 is an alternating copolymer based on an alkoxylated quinoxaline acceptor and a thiophene donor. It is a cost-effective medium band-gap polymer donor material used for high-performance polymer solar cells.

Over 7% device efficiency was achieved in OPV devics with PTQ1 as the polymer donor, PC71BM as the acceptor and 1-Chloronaphthalene as an additive [3]. This high efficiency was attributed to the polymer chain order and morphological effects.

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