钙钛矿材料 PCE12 (PBDB-T)1

钙钛矿材料 PCE12 (PBDB-T)1

价格 6,422.00
起订量 10㎡
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品牌 Ossila
型号 Ossila
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产品详情
品牌

Ossila

型号

Ossila

规格

PCE12 (PBDB-T)1

用途

科研

产地

英国

厂家

Ossila

  Luminosyn? PBDB-T (PCE12) is now available, featuring:

  High purity - PBDB-T is purified by Soxhlet extraction with methanol, hexane and chlorobenzene under an argon atmosphere.

  Batch-specific GPC data - so you have confidence in what you are ordering. Also, GPC data is always convenient for your thesis and publications

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

  价格

  Batch

  

  Quantity

  

  Price

  

  M1002

  

  100 mg

  

  6422.00

  

  M1002

  

  250 mg

  

  10034.38

  

  M1002

  

  500 mg

  

  16777.48

  

  M1002

  

  1g

  

  27454.05

  

  M1002

  

  2g

  

  50059.49

  

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

  Batch Details

  Batch

  

  Mw

  

  Mn

  

  PDI

  

  M1001

  

  117,406

  

  58,737

  

  2.0

  

  M1002

  

  70,532

  

  33,

  

  2.1

  

  General Information

  Full name

  

  Poly[(2,6-(4,8-bis(5-(2-ethylhexyl)thiophen-2-yl)-benzo[1,2-b:4,5-b’]dithiophene))-alt-(5,5-(1’,3’-di-2-thienyl-5’,7’-bis(2-ethylhexyl)benzo[1’,2’-c:4’,5’-c’]dithiophene-4,8-dione)]

  

  Synonyms

  

  PBDB-T, PBDTBDD

  

  CAS number

  

  

  Chemical formula

  

  (C68H78O2S8)n

  

  HOMO/LUMO

  

  HOMO = -5.33 eV, LUMO = -2.92 eV [3]

  

  Suggesting solvents

  

  Chloroform, chlorobenzene, dichlorobenzene

  

  Classification/Family

  

  Organic semiconducting materials, Medium band-gap polymers, Organic Photovoltaics, Polymer solar cells, Perovskite solar cells, Hole-transport layer materials, NF-PSCs, All-polymer solar cells (all-pscs).

  

  Chemical structure and product image of PBDB-T (PCE12); CAS No. , Chemical formula: (C68H78O2S8)n.

  Applications

  PBDB-T (PCE12) is one of the highest-performing donor polymers for OPVs, having reported efficiencies exceeding 12% [1, 2], and a certified efficiency approaching 11% [3]. These efficiencies were achieved when PBDB-T was used in conjunction with recently-reported non-fullerene acceptors (NFAs, including ITIC) in inverted architecture devices. These devices also exhibited excellent thermal stability, making the combination a promising candidate for the proposed 10/10 target of 10% efficiency and 10-year lifetimes.

  PBTB-T (PCE12) is easy to process, simplifying device fabrication while simultaneously providing high performance.

  Due to good HOMO alignment with the valence band of commonly-used perovskites, this polymer could also be potentially used as a hole-transporting material in perovskite solar cells .

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