Regioregular poly(3-hexylthiophene-2,5-diyl), commonly known as P3HT, is a popular low band gap polymer donor with applications in organic photovoltaics, polymer solar cells, OLEDs and OFETs. We sell a full range of P3HT with different molecular weights and regioregularities for a variety of research purposes. Produced by Merck KGaA, this high quality P3HT collection allows a wide range of science and engineering to be undertaken.
Prices from just £49.4 per gram
We have significantly lowered prices for certain batches of P3HT, available only while stocks last. We also offer discounts for 5g and 10g quantities, and further reductions for 25g, 50g and 100g quantities for teaching labs and scale-up tests.
All materials for R&D only. See all prices.
The highest regioregularity P3HT (M104, RR = 96.3%) produces highly crystalline films and is recommended for OFETs, nanofibril formation and fast drying OPVs at the thin interference peak (90 nm). However, the exceptionally high regioregularity of this P3HT means that gelling and surface roughness can be an issue for slow-drying thick-film OPVs (>200 nm). Lower molecular weight and regioregularity P3HT is recommended for inkjet and other large area or slow drying deposition techniques where gelling/aggregation and surface roughness need to be avoided.
A fabrication report with mobility measurements of 0.12 cm2/Vs for M104 can be found below.
All the P3HT below is highly soluble (50 mg/ml) in chlorinated solvents such as chloroform, chlorobenzene, dichlorobenzene and trichlorobenzene. The intermediate and lower molecular weight P3HT materials are recommended for use with non-chlorinated solvents such as xylene, toluene and THF due to their increased solubility.
| Full name | Poly(3-hexylthiophene-2,5-diyl) |
| Synonyms | P3HT |
| CAS number | 104934-50-1 |
| Chemical formula | (C4H2S)n |
| Molecular weight | See Batch Details table at bottom of the page for information |
| HOMO / LUMO | HOMO = -5.2 eV, LUMO = -3.2 eV |
| Solubility | Chloroform, chlorobenzene |
| Classification / Family | Polythiophenes, Organic semiconducting materials, Low band gap polymers, Polymer donors, Organic photovoltaics, Polymer solar cells, OLEDs, OFETs |
Field effect mobilities in excess of 0.12 cm2/Vs are recorded using M104 when the active layer is dispensed on OTS-treated silicon oxide dielectric by static spin coating from an optimized high/low boiling point solvent mix.
High hole mobility in conjunction with good solubility and partial air stability make regioregular P3HT a reference material of choice for both fundamental and applied research in organic electronic, physics and chemistry. As one of the most well-studied organic semiconductor, P3HT is often acknowledge to be one of the benchmark against which any new p-type or donor conjugate molecule should be compared and evaluated.
Mobility has previously been found to be positively correlated with increasing region-regularity, slow drying time (achieved using high boiling point solvent), lowering of the surface energy, and molecular weight in excess of 50 kD. These conditions favour p-p stacking parallels to the OFET substrate, which in turn results in improved charge transport across the transistor channel [1-13].
| Substrate size | 20 x 15 mm |
| Gate conductivity | 1-30 O·cm (Boron doped) |
| Silicon oxide thickness | 300 nm |
| Device per substrates | Five, common gate |
| Channel length | 30 µm |
| Channel width | 1000 µm |
The active layer solution preparation, spin coating, substrate annealing and measurements are performed in a glove box under a nitrogen atmosphere (H2O <0.1 PPM; O2 < 5/8 PPM).
For generic details on the fabrication of OPV devices, please see our written guide and video demonstration.
High-Regioregular and high molecular weight RR-P3HT (M104) (RR = 96.3%, Mw = 77,500, Mn = 38,700) is dissolved in a mix of high and low boiling point solvent in order to exploit the beneficial effect of long drying time and increase the wettability of low energy surface, respectively.
The water-drop test on the treated silicon is a quick test to qualitatively assess the effect of the OTS on the silicon substrates to ensure that the fabrication has functioned correctly. You can get a good approximation of the contact angle using your eye or a simple digital photo.
Previous quantitative assessments have shown that this routine will produce contact angles between 90 and 110°C (depending on the lab temperature, humidity and other factors). You can quantify that contact angle easily and accurately using the Ossila Contact Angle Goniometer.
P3HT MSDS sheet
The below P3HT is in stock for immediate dispatch.
| Batch | RR | Mw | Mn | PDI | Notes |
M102 | 95.7% | 65,200 | 29,600 | 2.20 | Discontinued |
M103 | 94.2% | 54,200 | 23,600 | 2.30 | Discontinued |
M105 | 95.5% | 94,100 | 49,500 | 1.90 | Discontinued |
M106 | 94.7% | 34,100 | 19,500 | 1.75 | Discontinued |
M107 | 93.6% | 24,480 | 8,750 | 2.8 | In Stock |
M108 | 94.2% | 36,010 | 13,340 | 2.7 | In Stock |
M109 | 95.2% | 36,600 | 18,300 | 2.0 | In Stock |
M1010 | 97.3% | 74,000 | 35,240 | 2.1 | In Stock |
| M1011 | 97.6% | 60,150 | 28,650 | 2.1 | In Stock |
| Batch | 1 g | 5 g | 10 g | 25 g | 50 g | 100 g |
| M107 | £174 | £566 | £904 | £1,810 | £3,040 | £4,940 |
| M108 | £181 | £591 | £942 | £1,890 | £3,190 | £5,170 |
| M109 | £212 | £687 | £1,100 | £2,190 | - | - |
| M1010 | £212 | £687 | £1,100 | £2,190 | £3,660 | £6,040 |
| M1011 | £212 | £687 | £1,100 | £2,190 | £3,660 | £6,040 |
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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