讲稿20-有机发光二极管-第八部分课件.ppt
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- 讲稿 20 有机 发光二极管 第八 部分 课件
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1、1Organic LEDs part 8 Exciton Dynamics in Disordered Organic Thin Films Quantum Dot LEDsHandout on QD-LEDs:Coe et al.,Nature 420,800(2002).April 29,2003 Organic Optoelectronics-Lecture 20b2Exciton Dynamics in Time Dependant PL3Dynamic Spectral Shifts of DCM2 in Alq3 Measurement performed on doped DCM
2、2:Alq3 films Excitation at=490 nm(only DCM2 absorbs)DCM2 PL red shifts 20 nm over 6 ns Wavelength nm 4Time Evolution of 4%DCM2 in Alq3 PL Spectrum5Electronic Processes in Moleculesdensity of availableS1 or T1 states6Time Evolution of DCM2 Solution PL Spectra7Spectral Shift due to Exciton Diffusion I
3、ntermolecular Solid State Interactions 8Excitonic Energy Variations9Exciton Distribution in the Excited State(S1 or T1)Time Evolved Exciton Thermalization EXCITON DIFFUSION LEADS TO REDUCTION IN FWHM10111213Time Evolution of Peak PL in Neat Thin Films14Parameters for Simulating Exciton Diffusionobse
4、rved radiative lifetime()Normalized IntegratedSpectral IntensityFrster radius(RF)Assign value for allowed transfers:Assume Gaussian shape of width,wDOS Center at peak of initial bulk PL spectrum Molecular PL spectrum impliedexcitonic density of states(gex(E)15Fitting Simulation to Experiment Doped F
5、ilms Good fits possible for all data sets RF decreases with increasing doping,falling from 52 to 22 wDOS also decreases with increasing doping,ranging from 0.146 eV to 0.120 eV16Fitting Simulation Neat Films Spectral shift observed in each material system Molecular dipole and wDOS are correllated:lo
6、wer dipoles correspond to less dispersion Even with no dipole,some dispersion exists Experimental technique general,and yields firstmeasurements of excitonic energy dispersionin amorphous organic solids17Temporal Solid State Solvationupon excitation both magnitude and directionof lumophore dipole mo
7、ment can changeFOR EXAMPLE for DCM:1 0 20 Debye!from 5.6 D to 26.3 D following the excitation the environment surrounding theexcited molecule will reorganize to minimize the overallenergy of the system(maximize Eloc)18Exciton Distribution in the Excited State(S1 or T1)Time Evolved Molecular Reconfig
8、uration DIPOLE-DIPOLE INTERACTIONLEADS TO ENERGY SHIFT IN DENSITY OF EXCITED STATESlog(Time)19Fusion of Two Material SetsHybrid devicescould enableLEDs,Solar Cells,Photodetectors,Modulators,and Laserswhich utilize thebest properties of each individual material.EfficientOrganicSemiconductorsFlexibleE
9、missiveFabrication ofrational structureshas been the mainobstacle to date.20Inorganic Nanocrystals Quantum DotsQuantum Dot SIZESynthetic route of Murrayet al,J.Am.Chem.Soc.115,8706(1993).21Fusion of Two Material SetsQuantum DotsOrganic Molecules22Integration of Nanoscale MaterialsQuantum Dots and Or
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