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By Noyes W. A.

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Additional resources for A Kinetic Hypothesis to Explain the Function of Electrons in the Chemical Combination of Atoms(en)(5

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C. Grimsdale · K. Müllen blue, but rapidly red-shifted, with a simultaneous loss of emission intensity, so that the devices had a half-life (time for intensity to drop to half its intial value) of less than 1 hour. The green emission from 87 was stable, with an estimated half-life of 5000 h. Copolymers 89 and 90 showed intermediate behaviour. 2 Defect Emission from PIFs The source of this green emission might have been either excimers or defects. The amount of green emission in the solid state spectra was shown to correlate well with the presence of long ordered structures due to πstacking in the film morphology revealed by atomic force microscopy (AFM) studies [113].

Chemical Modifications . . . . . . . . . . . . Physical Manipulation . . . . . . . . . . . . Sources of Undesirable Green Emission in PF-based PLEDs . . 2 PFs with Various Emission Colors . . . . . . . . Green and Red Emitters . . . . . . . . . . . Chemical Strategy via Fluorescent Moiety Incorporated in Polymer Backbone, Side Chain, or Chain End Chemical Strategy via Phosphorescent Moiety Incorporated in Polymer Side Chain and Backbone . . .

Sources of Undesirable Green Emission in PF-based PLEDs . . 2 PFs with Various Emission Colors . . . . . . . . Green and Red Emitters . . . . . . . . . . . Chemical Strategy via Fluorescent Moiety Incorporated in Polymer Backbone, Side Chain, or Chain End Chemical Strategy via Phosphorescent Moiety Incorporated in Polymer Side Chain and Backbone . . . White Emitters . . . . . . . . . . . . . Physical Blending System . . . . . . . . . . Chemical Strategy: Single-Polymer Approach .

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A Kinetic Hypothesis to Explain the Function of Electrons in the Chemical Combination of Atoms(en)(5 by Noyes W. A.


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