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Ossila/PCDTBT/100 mg/M1311-100mg
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Ossila/PCDTBT/100 mg/M1311-100mg
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Ossila
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M1311-100mg
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4000-520-616

PCDTBT is one of the next generation donor materials developed for organic photovoltaics to produce better efficiencies and lifetimes. The key properties of PCDTBT result from the lower HOMO/LUMO levels which lead to advantages over standard organic photovoltaic materials of increased open circuit voltage, longer wavelength absorption and improved stability under ambient conditions.

The lower lying HOMO level of PCDTBT makes it much more stable under ambient conditions and therefore an ideal candidate to use with large area deposition methods such as ink-jet printing, spray coating and blade coating. However, for these deposition techniques, uniform, aggregate free coatings are essential and so lower molecular weights are often desirable.

Power conversion efficiencies of up to 6.7% have been achieved in our own labs using PCDTBT (M137) in a standard reference architecture using PEDOT:PSS as a hole interface and calcium/aluminium as an electron interface. By using advanced interface materials and antireflection coatings PCDTBT has also achieved up to 7.2% in the literature [1].

For information on processing please see our specific fabrication details for PCDTBT below, general fabrication video, general fabrication guide, optical modelling paper on our standard architecture [2], or email us for any additional help and support.

Luminosyn™ PCDTBT

Luminosyn™ PCDTBT is now available.

High efficiencyPower conversion efficiencies of up to 6.7% having been achieved in our own lab

High purityPCDTBT is purified by soxhlet extraction with methanol, hexane and chlorobenzene under argon atmosphere

Batch-specific GPC dataHave confidence in what you are ordering; batch-specific GPC data for your thesis or publications

Large quantity ordersPlan your experiments with confidence with polymers from the same batch

General Information

Full namePoly[N-9"-heptadecanyl-2,7-carbazole-alt-5,5-(4",7"-di-2-thienyl-2",1",3"-benzothiadiazole)]
SynonymsPCDTBT
CAS number958261-50-2
Chemical formula(C43H47N3S3)n
Molecular weightSee Batch Details for information
HOMO / LUMOHOMO = -5.4 eV, LUMO = -3.6 eV
SolubilityChloroform, chlorobenzene, dichlorobenzene and trichlorobenzene
Classification / FamilyPolycarbazoles, Heterocyclic five-membered ring, Organic semiconducting materials, Low band gap polymers, Organic photovoltaics, Polymer solar cells, OLEDs, OFETs and Perovskite solar cells

Chemical Structure

Chemical structure of PCDTBT
Chemical structure of PCDTBT

Usage Datasheet

For high performance organic photovoltaics with efficiencies of 6% and above poly[N-9"-heptadecanyl-2,7-carbazole-alt-5,5-(4",7"-di-2-thienyl-2",1",3"-benzothiadiazole)] (PCDTBT). We have achieved efficiencies of 6.7% in our own labs using a standard reference architecture of PEDOT:PSS as a hole interface and calcium/aluminium as an electron interface (see below for fabrication details). Our paper published in Nature Scientific Reports titled Molecular weight dependent vertical composition profiles of PCDTBT:PC71BM blends for organic photovoltaics explores the effect and optimisation of molecular weight.

PCDTBT photovoltaic JV curve and power conversion efficiency
JV curve from PCDTBT in a standard reference device. HOMO/LUMO = -5.4 eV / -3.6 eV, Bandgap = 1.8 eV; CAS number 958261-50-2
PCDTBT UV-Vis Absorption Spectrum
PCDTBT Photoluminescence spectrum

Solution Details

Ossila’s reference devices were made by dissolving PCDTBT (M137) at 4 mg/ml in anhydrous chlorobenzene using a stir-bar and hotplate at 80°C overnight. This was then mixed with Ossila’s dry 95%/5% C70 PCBM (M113) powder in a 1:4 blend ratio to produce an overall concentration of 20 mg/ml.The blend solution was heated with a stir-bar on a hotplate at 80°C for 2 hours before cooling to room temperature over 10 minutes and filtering with a 0.45 μm PTFE filter immediately prior to spinning at 700 rpm to give a film of approx. 70 nm.

Device Structure

Glass / ITO / PEDOT:PSS / PCDTBT:PC70BM / Ca / Al

Ossila’s pre-patterned ITO substrates (S171) with 100 nm (20 Ω/square) ITO were cleaned with the following procedure:

  • 5 minutes sonication in hot 1% Hellmanex III
  • 2x hot dump rinses, 1x cold dump rinse
  • 5 minutes sonication in warm IPA
  • 3x cold dump rinses
  • 5 minutes sonication in hot 10% NaOH solution
  • 2x cold dump rinses then stored in DI water until use
  • N2 blow dry before spin-coating the hole transport layer (no further cleaning or surface treatment required)

PEDOT:PSS (AI4083 from Ossila) was filtered through a 0.45 µm PES filter (C2009S1) before spin coating at 6000 rpm in air to produce a layer 30 nm thick. The coated substrates were then stored on a hotplate at 150°C before transfer into a glove box and a further bake of 150°C for 10 mins to remove any residual moisture.The active ink was spin cast and the cathode strip wiped clean using chlorobenzene before transfer to an evaporator where 2.5 nm of Ca followed by 100 nm of Al were deposited at <10-6 mbar. The substrates were then annealed at 80°C for 15 mins on a hotplate in the glove box before protecting with the Ossila encapsulation system. Measurement was performed under ambient conditions using a Newport 92251A AM1.5 100 mW/cm2 solar simulator and NREL certified silicon reference cell.

As Featured In...

As featured in button

All-Inkjet-Printed, All-Air-Processed Solar Cells, Sirringhaus, McNeill et al., Advanced Energy Materials, 1400432, 2014

"Our in depth study on PCDTBT:PC70BM layers demonstrated that inkjet-printed blend layers exhibited similar nanoscale structure and excited state dynamics to spin-coated layers."

MSDS Documentation

PCDTBT MSDSPCDTBT MSDS sheet

Pricing

BatchQuantityPrice
M1311100 mg£198.00
M1311250 mg£396.00
M1311500 mg£677.00
M13111 g£1090.00
M13112 g£1990.00
M13115 g / 10 g*Please enquire

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

Batch Details

The below materials are in stock for immediate dispatch to research institutions worldwide.

In general, PCDTBT is used at lower concentrations than P3HT (typically 4 to 7 mg/ml) and higher blend ratios (1:4 PCDTBT:PC70BM) and as such 100 mg of PCDTBT will make around 500 devices on Ossila"s standard ITO substrates (20 x 15 mm) even assuming 50% material loss in filtration and solution preparation. Please note that as the higher molecular weight fractions have a lower yield we are now operating differential pricing policy. See below for more details on separation, yield and differential pricing.

BatchMwMnPDIStock Info
M131134,90016,2002.15In stock

Literature and References

Please note that Ossila has no formal connection to any other authors or institutions in these references.

  1. Efficient, Air-Stable Bulk Heterojunction Polymer Solar Cells Using MoOx as the Anode Interfacial Layer, Y. Sun et al., Advanced Materials, 23, 2226-2230 (2011)
  2. Optimising the efficiency of carbazole co-polymer solar-cells by control over the metal cathode electrode, D.C. Watters et al., Organic Electronics, 13, 1401-1408 (2012)
  3. Efficient perovskite photovoltaic devices using chemically doped PCDTBT as a hole-transport material, M. Wong-Stringer et al., J. Mater. Chem. A, 2017, 5, 15714-15723; DOI: 10.1039/C7TA03103C.

To the best of our knowledge the technical information provided here is accurate. However, Ossila assume no liability for the accuracy of this information. The values provided here are typical at the time of manufacture and may vary over time and from batch to batch.

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western blot 转移缓冲液的配方? 123
锦瑟华年7252017-11-27

我在网上看到有两种关于转膜缓冲液的配方。第一种是:

10×转缓(储液):30.3gTris,144.1g甘氨酸,调pH到8.3并用去离子水定容至1L,用的时候取100mL,稀释10倍。

另外一种是:

1×转缓(现配现用):3.03gTris,14.4g甘氨酸,200mL甲醇,用去离子水定容至1L,不调pH。

想请教一下各位,这两种配方哪种更好一些?谢谢!



第一次做WB,两块胶,10%的和8%的,湿转1.5h,然后发展两张膜成了如图所示,好尴尬呀,请问有谁能解答一下问题出在哪里了么?

求助:想用CD206标记抗体,但看说明书写的要破膜表达量才高,没做过破膜标记,请问应该怎么破膜标记抗体,详细步骤是什么?另外,破膜后不会影响细胞活性吗,不会让细胞死掉,流式细胞仪还能检测到吗?

请问各位前辈们,如果我需要检测小鼠关于免疫方面的指标,是不是就不能用裸鼠造膜,用一般的小鼠就可以了吗?
最近在做BDNF的WB,条件一直摸不好,有没有大神分享一下转膜的电流和时间,万分感谢
最近一直跑285KD分子量的蛋白,转膜条件是90V,90min,转完膜之后老是有180kd的Marker留了一点点在胶上,显影的时候285kd的条带就很弱很弱,求高手指点这是怎么回事?
第一次做wb。转膜完发现膜上用丽春红完全染不出条带也没有Marker的带转膜液还混了第二天看底下有白色絮状物但是用的是学姐前几天配的转膜液。配制上应该没有问题看滤纸的边缘有黄色类似条带的颜色是转反了吗?还有查丁香园上还有可能是转过头我们200mA90min这样会转过头吗转完的时候看过膜上是没有任何条带了。
缓冲液将血液转移入50ml离心管定容至45ml;400g室温离心5min后,去除上清;加入红细胞裂解液至45ml,翻转孵育8min;400g离心5min后去上清;重复裂解1次后,加入洗液至45ml,重悬细胞后计数。细胞400g离心5min后,去上清;所得细胞按107白细胞/20ul磁珠比例与Miltenyi磁珠混合,4℃孵育15min;将细胞悬液加入已润湿的LS柱,在强磁场作用下收集未吸附的CD45-细胞组份(含CTC),用3ml洗涤液洗涤柱子,共洗涤3次。所收集的细胞经离心滴加于载玻片上,置于超净台中干燥。加入2%多聚甲醛固定40min,PBS冲洗、晾干,-20℃保存备用。