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§motivation(1) Viewgraphs by J D White http://www.xiaotu.com/res/lep1109.pps Paper Thin Lighting for a Wall
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§motivation(2) Viewgraphs by J D White http://www.xiaotu.com/res/lep1109.pps RRR Displays: The Polymer Vision -- Rollable, Rugged, Roaming -- http://www.polymervision.com/ http://www.cdtltd.co.uk/
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§motivation(3) Viewgraphs by J D White http://www.xiaotu.com/res/lep1109.pps Solar Curtains (Karnarka) 太陽電 http://www.greentechmedia.com/articles/read/konarka-runs-solar-curtain-wall-pilot/
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§motivation(4) Viewgraphs by J D White http://www.xiaotu.com/res/lep1109.pps Displays: The Polymer Advantage Flexible Bright No directionality > light bulb > LCD displays Low power consumption Cheap Ref. IEEE Spectrum August 2000
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§motivation(5) Viewgraphs by J D White http://www.xiaotu.com/res/lep1109.pps Solar Cells? 太陽電如何? What's Important? –Efficiency? –Carrier Mobility? –Size? –Scalability? YES, but… Ultimately, only 1 thing really matters… $/Watt Electricity output
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§motivation(6) Viewgraphs by J D White http://www.xiaotu.com/res/lep1109.pps Solar Cells: The Polymer Advantage Semiconductor properties with polymer processing –CHEAP Chemical modification to the basic polymer chain is relatively simple –Optimize emission/absorption wavelength, –Optimize basic physical properties
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§motivation(7) Viewgraphs by J D White http://www.xiaotu.com/res/lep1109.pps Old Predictions within 10 years, the square footage of organic circuitry might exceed that of silicon electronics (IEEE Spectrum 2000) The technology of conjugated polymers is a disruptive technology. Just as the transistor wiped out companies making the vacuum tube, so will organic electronics wipe out those relying on silicon (Alan Heeger, 2000 Nobel prize Laurite)
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§motivation(8) Viewgraphs by J D White http://www.xiaotu.com/res/lep1109.pps Seven Year Old Headline News “Flexible future in store for flat-panel displays ” PCWORLD (30th September 2004) “Flexible flat-panel displays coming soon” Computer Weekly (2nd August 2004)
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§motivation(9) Viewgraphs by J D White http://www.xiaotu.com/res/lep1109.pps Why not? Device Life Time: A factor of 10 shorter than needed for computer displays Believed due to quenching of the light emitting/absorbing sites due to interaction with Oxygen. Underlying photo-physics not understood Light 光 O2O2 + = Death 死
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§motivation(10) Viewgraphs by J D White http://www.xiaotu.com/res/lep1109.pps How to find a solution? Device Approach Basic Physics
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§motivation(11) Viewgraphs by J D White http://www.xiaotu.com/res/lep1109.pps Review: Operation of an PLED Ref. IEEE Spectrum August 2000 OPV
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§motivation(12) Viewgraphs by J D White http://www.xiaotu.com/res/lep1109.pps Device Approach Design device to stop oxygen from reaching active area –Difficult: Plastics are permeable gases Design electrodes to minimize metal ion migration –Difficult: Efficient hole injectors (I.e. Ca + ) also like to move
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§motivation(13) Viewgraphs by J D White http://www.xiaotu.com/res/lep1109.pps Basic Physics Goal: Seek to understand energy transfer between and within polymers Goal: Seek to understand the quenching process itself Then can design around the problem…
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§motivation(14) Viewgraphs by J D White http://www.xiaotu.com/res/lep1109.pps Not a Simple System…. Single polymer effects –Intra-chain emission –Aggregate emission Multiple polymer effects –Inter-chain –Dimers, trimers, excimers Basic Physics is masked Fluorescence Spectrum of DOO-PPV
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§motivation(15) Viewgraphs by J D White http://www.xiaotu.com/res/lep1109.pps A way forward… Clearly we would like to separate out these effects and study them individually (Physicists like simple problems…:) Thus one turns to single molecule detection (SMD) and single molecule spectroscopy (SMS)
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