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Tungsten oxide (WO3-x) nanoparticle ink - Particle size: ≤ 50 nm (BET), concentration: 2.5 wt.% in 2-propanol, high purity

  • Particle size: ≤ 50 nm (BET), concentration: 2.5 wt.% in 2-propanol
Item Number
T487449
Grouped product items
SKUSizeAvailabilityPrice Qty
T487449-5ml
5ml
Available within 8-12 weeks(?)
Production requires sourcing of materials. We appreciate your patience and understanding.
$184.90
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Nanoparticle dispersant

Basic Description

SynonymsAvantama P-10;Tungsten oxide nanoparticle dispersion;WO₃ ink;Tungsten oxide suspension;Nanograde P-10;WO₃ dispersion
Specifications & PurityParticle size: ≤ 50 nm (BET), concentration: 2.5 wt.% in 2-propanol
Product Description

This WO3-xnanoparticle ink is for slot-dye, spin-coating and doctor blading for the use as hole transport layer in printed electronics. Tungsten oxide nanoparticle ink is a hole-selective interface layer ink based on a colloidal suspension of tungsten oxide (WO3) nanoparticles in isopropanol. The average size of WO3particle is optimized around 12-16 nm. Tungsten oxide nanoparticle exhibits high work function, processability and easy layer formation on hydrophilic as well as hydrophobic substrates.This WO3-xnanoparticle ink is universally applicable in normal and inverted architecture solar cells.Annealing temperature <100°C.WO3nanoparticle ink can be applied in OPV cells as hole extraction layer (HEL) materials. Tungsten oxide nanoparticle ink can be mixed with PEDOT:PSS formulations in order to fine tune electronic and morphological dry layer properties (e.g. conductivity, surface roughness or layer porosity).

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3 results found

Lot NumberCertificate TypeDateItem
E2413514Certificate of AnalysisMar 26, 2024 T487449
E2413526Certificate of AnalysisMar 26, 2024 T487449
G23131401Certificate of AnalysisJul 05, 2023 T487449

Related Documents

References

1. Lin Zhou,Yuhua Zuo,Tapas Kumar Mallick,Senthilarasu Sundaram.  (2019-06-21)  Enhanced Efficiency of Carbon-Based Mesoscopic Perovskite Solar Cells through a Tungsten Oxide Nanoparticle Additive in the Carbon Electrode..  Scientific reports,  ((1)): (8778-8778).  [PMID:31217449]

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