Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Marta Ruscello"'
Autor:
Gerardo Hernandez-Sosa, Mervin Seiberlich, Uli Lemmer, Marta Ruscello, Noah Strobel, Luis Arturo Ruiz-Preciado
Publikováno v:
Advanced electronic materials, 7 (1), Art.Nr. 2000811
Organic photodiodes (OPDs) are optical sensors combining high performance, lightweight mechanical flexibility, and processability from solution. Their fabrication by industrial printing techniques opens a wide range of innovative applications for eme
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::ea578d43fdc8b0ce1f3db111e87fb00d
https://publikationen.bibliothek.kit.edu/1000127565
https://publikationen.bibliothek.kit.edu/1000127565
Autor:
Sebastian Stolz, Marta Ruscello, Wolfgang Kowalsky, Florian Ullrich, D. Leonardo Gonzalez Arellano, Gerardo Hernandez-Sosa, Todd Emrick, Sabina Hillebrandt, Annemarie Pucci, Alejandro L. Briseno, Eric Mankel
Publikováno v:
Organic Electronics
Organic electronics, 50, 384-388
Organic electronics, 50, 384-388
Here we describe the use of a polymer zwitterion as a solution-processable material that serves as the key component of the electron injection layer (EIL) in solution processed organic light-emitting diodes (OLEDs). Poly(sulfobetaine methacrylate) (P
Autor:
Artem Levitski, Gerardo Hernandez-Sosa, Natalie Stingelin, Nikolaos Droseros, Eleni Sachs, Marta Ruscello, Giovanni Maria Matrone, Stefan Schlisske, Wolgang Kowalsky, Natalie Banerji, Tanmoy Sarkar, Gitti L. Frey, Eric Mankel, Patrick Reiser
Publikováno v:
Proceedings of the 1st Interfaces in Organic and Hybrid Thin-Film Optoelectronics.
Autor:
Gerardo Hernandez-Sosa, Martin Held, Stefan Schlisske, Uli Lemmer, Marta Ruscello, Anthony J. Morfa, Tobias Rödlmeier, Kathleen Fuchs, Silvia Menghi
Publikováno v:
Langmuir : the ACS journal of surfaces and colloids. 34(21)
Digital printing enables solution processing of functional materials and opens a new route to fabricate low-cost electronic devices. One crucial parameter that affects the wettability of inks for all printing techniques is the surface free energy (SF
Autor:
Artem Levitsky, Natalie Stingelin, Wolfgang Kowalsky, Gitti L. Frey, Natalie Banerji, Giovanni Maria Matrone, Eric Mankel, Gerardo Hernandez-Sosa, Patrick Reiser, Stefan Schlisske, Marta Ruscello, Eleni Sachs, Nikolaos Droseros, Tanmoy Sarkar
Publikováno v:
Ruscello, Marta; Sarkar, Tanmoy; Levitsky, Artem; Matrone, Giovanni Maria; Droseros, Nikolaos; Schlisske, Stefan; Sachs, Eleni; Reiser, Patrick; Mankel, Eric; Kowalsky, Wolfgang; Banerji, Natalie; Stingelin, Natalie; Frey, Gitti L.; Hernandez-Sosa, Gerardo (2019). Nanocomposite of nickel oxide nanoparticles and polyethylene oxide as printable hole transport layer for organic solar cells. Sustainable energy & fuels, 3(6), pp. 1418-1426. Royal Society of Chemistry 10.1039/C9SE00216B
Sustainable Energy & Fuels
Sustainable energy & fuels, 3 (6), 1418-1426
Sustainable Energy & Fuels
Sustainable energy & fuels, 3 (6), 1418-1426
We focused on the low-temperature fabrication (∼100 °C) of nanoparticle-based NiOx hole transport layers for organic solar cells. We used high molecular weight polyethylene oxide (PEO) as a sacrificial additive for the processing of NiOx nanoparti