932353
PTCDI
Synonyme(s) :
3,4,9,10-Perylenetetracarboxylic acid diimide
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About This Item
Produits recommandés
Catégories apparentées
Application
This TADF emitter is a sublimed high purity material, solution processable 3,4,9,10-perylenetetracarboxylic diimide has been reported for use in:
- photovoltaics
- thermoelectricity (induced by the Soret effect )
- batteries for energy storage
- photocatalysis for water purification or selective solar fuel production from CO2
- chemosensing
Mention d'avertissement
Warning
Mentions de danger
Conseils de prudence
Classification des risques
STOT RE 2
Code de la classe de stockage
11 - Combustible Solids
Classe de danger pour l'eau (WGK)
WGK 3
Point d'éclair (°F)
Not applicable
Point d'éclair (°C)
Not applicable
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ACS nano, 14(5), 5998-6006 (2020-05-10)
The visual aesthetic that involves color, brightness, and glossiness is of great importance for building integrated photovoltaics. Semitransparent organic solar cells (ST-OSCs) are thus considered as the most promising candidate due to their superiority in transparency and efficiency. However, the
Advanced materials (Deerfield Beach, Fla.), 28(33), 7284-7290 (2016-06-17)
A self-assembled perylene-3,4,9,10-tetracarboxylic diimide(PDINH) supramolecular system consisting of all-organic PDINH molecule building blocks through non-covalent interactions works as a visible light photocatalyst with high activity.
Strongly coupled perylene bisimide/reduced graphene oxide as organic cathode materials for lithium ion batteries
Electrochimica Acta, 282, 24-29 (2018)
Environmental science & technology, 53(3), 1564-1575 (2019-01-04)
This study describes a promising sunlight-driven photocatalyst for the treatment of ofloxacin and other fluoroquinolone antibiotics in water and wastewater. Perylene diimide (PDI) supramolecular nanofibers, which absorb a broad spectrum of sunlight, were prepared via a facile acidification polymerization protocol.
Advanced materials (Deerfield Beach, Fla.), 32(45), e2002752-e2002752 (2020-09-15)
Low-cost, non-toxic, abundant organic thermoelectric materials are currently under investigation for use as potential alternatives for the production of electricity from waste heat. While organic conductors reach electrical conductivities as high as their inorganic counterparts, they suffer from an overall
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