000 01979naaaa2200445uu 4500
001 https://directory.doabooks.org/handle/20.500.12854/47785
005 20220220091041.0
020 _aKSP/1000051513
020 _a9783731504696
024 7 _a10.5445/KSP/1000051513
_cdoi
041 0 _aGerman
042 _adc
100 1 _aPeters, Katharina
_4auth
245 1 0 _aFlüssigprozessierung von Multischicht-OLEDs aus kleinen Molekülen
260 _bKIT Scientific Publishing
_c2016
300 _a1 electronic resource (XV, 237 p. p.)
506 0 _aOpen Access
_2star
_fUnrestricted online access
520 _aOrganic light-emitting diodes consist of several layers of organic molecules just a few nanometers thick. In future, it may become possible to change the manufacturing process from vacuum deposition to a cost-effective liquid processing. This theoretical and practical investigation focuses on the underlying processes, in particular coating and drying, as well as the factors influencing the separation of individual layers in multilayer systems consisting of small molecules.
540 _aCreative Commons
_fhttps://creativecommons.org/licenses/by-sa/4.0/
_2cc
_4https://creativecommons.org/licenses/by-sa/4.0/
546 _aGerman
653 _aSchlitzgießen
653 _adiffusion
653 _aknife coating
653 _aDiffusionOLED
653 _aMehrschichtsysteme
653 _aTrocknung
653 _aslot die coating
653 _aSMOLED
653 _amultilayer
653 _asolution process
653 _adrying
653 _aFlüssigprozessierung
653 _aRakelbeschichtung
653 _aKleine Moleküle
653 _aOLED
653 _aMultischichten
653 _asmall molecules
856 4 0 _awww.oapen.org
_uhttps://www.ksp.kit.edu/9783731504696
_70
_zDOAB: download the publication
856 4 0 _awww.oapen.org
_uhttps://directory.doabooks.org/handle/20.500.12854/47785
_70
_zDOAB: description of the publication
999 _c77853
_d77853