Ultimate Guide to Real-Time Monitoring Systems: Pressure Alerts, Dash Cameras, and Tire Monitoring Solutions
Ultimate Guide to Real-Time Monitoring Systems: Pressure Alerts, Dash Cameras, and Tire Monitoring Solutions Ultimate Guide to Real-Time Monitoring Systems: Pressure Alerts, Dash Cameras, and Tire Monitoring Solutions
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Product Details

High Conductivity PEDOT:PSS Formulation

Used for applications in OPV, OLED, and perovskite solar cells


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Clevios™ PH 1000 PEDOT:PSS (CAS number 155090-83-8) is designed for applications where high conductivity and optical transparency are required. The potential uses for high conductivity include replacements for ITO, semi-transparent top electrodes in thin film electronics, top gate electrodes in FETs, and for use as a thick planarization layer on rough surfaces such as FTO. Sheet resistances as low as 300 Ω/square can be achieved with the addition of conductivity enhancement agents such as dimethyl sulfoxide and ethylene glycol.

Optical Transparency

Ideal for interfacial layers

Versatile Use

Applications in OPV, OLED and perovskite solar cells

High Quality

Quality Formulation

High Conductivity

Tailored High conductivity

PEDOT:PSS (PH1000) from Ossila was featured in the high-impact paper (IF 30.85), , L. Manjakkal et al., Adv. Mater., 1907254 (2020); DOI: 10.1002/adma.201907254; and paper (IF 16.6), , J. Karst et al., Nat. Commun., 13 7183 (2022); DOI: 10.1038/s41467-022-34494-0.

Technical Data


Product Name Clevios™ PH 1000
Solvent Water
Composition PEDOT/PSS (1:2.5 w/w)
CAS Number 155090-83-8
Solid Content 1.0 – 1.3 wt.%
Work Function 4.8 – 5.0 eV
Resistivity < 0.0012 Ω.cm
Sheet Resistance 100 – 1000 Ω/sq
Conductivity High conductivity, 850 S/cm after the addition of 5% dimethyl sulfoxide (dried coating)
Particle Size Distribution D50 = 30 nm
Viscosity 15 – 60 mPa.s
pH Value 1.5 – 2.5
Packaging 100 ml of solution sealed in a light resistant bottle with temperature indicator
Storage 3 – 5 °C

Spin Speed Data


MSDS Document


Resources and Support


For the deposition of thin films of PEDOT:PSS 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.

PH 1000 PEDOT:PSS
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$ 90.35

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