Recycled and Biodegradable 3D Printing Filaments: High-Toughness PLA, Flexible TPU, and Storage Solutions
Recycled and Biodegradable 3D Printing Filaments: High-Toughness PLA, Flexible TPU, and Storage Solutions Recycled and Biodegradable 3D Printing Filaments: High-Toughness PLA, Flexible TPU, and Storage Solutions
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Home Lighting Storage Temperature Indicators
Product Details

Toluene-Based PEDOT Formulation

Used for applications in OPV and perovskite solar cells


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The future production of HTL Solar 3 PEDOT Complex has been discontinued. We can only supply HTL Solar 3 PEDOT Complex as stock lasts. It will be replaced by Complex in anisole as an alternative with similar properties.

HTL Solar 3 PEDOT Complex is a toluene-based PEDOT formulation using an alternative counter ionomer to PSS, allowing for the dispersion in toluene. HTL Solar 3 is ideal for use with materials, or in environments, that are water sensitive. Examples include in glove box environments or for use with or .

Increased Wettability

Ideal for perovskite solar cells or with materials dissolved in or degraded by water.

Versatile Use

Ideal for use with water sensitive materials or environments

High quality

Quality formulation

Low Conductivity

Low conductivity 0.002 – 0.2 S/cm

PEDOT Complex (HTL Solar 3) from Ossila was featured in the high-impact paper (IF 39.8), , T. Du et al., Joule, 7 (8), 1920-1937 (2023); DOI: 10.1016/j.joule.2023.06.005; and paper (IF 22.0), J. Wang et al., ACS Energy Lett., 7 (10), 3353–3361 (2022); DOI: 10.1021/acsenergylett.2c01578.

Technical Data


Product NameClevios™ HTL Solar 3
SolventToluene
CompositionPEDOT complex
Solid Content1.5 – 2.5 wt.%
Work Function4.4 – 4.8 eV
Resistivity5 – 500 Ω/cm
Sheet Resistance 10E6 Ω/sq
ConductivityLow conductivity 0.002 – 0.2 S/cm
Particle Size DistributionN/A
Viscosity<30 mPa.s
pH ValueN/A
Packaging2 x 25 ml of solution sealed in light resistant bottles with temperature indicators
Storage3 – 5 °C

Spin Speed Data


MSDS Document


Resources and Support


For the deposition of thin films of PEDOT materials on a freshly prepared surface, we recommend using a vacuum-free spin coater and following this five-step process:

PEDOT synthesis involves the oxidative chemical or electrochemical polymerization of EDOT monomer. The choice of counterions and polymerization method significantly affects the conductivity, work function, and stability of the resulting PEDOT polymer.

HTL Solar 3 PEDOT Complex
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$ 72.15

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