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Organic semiconductor devices

Figure 12.3. Benchmark of peer-reviewed academic reports of organic semiconductor device field-effect mobility versus time of report. All data points are for spin-coated organic semiconducting transistors. Solid points are derived from the benchmark study completed in 2002 by Brazis and Dyrc at Motorola (unpublished). The curve is a calculated estimation, based on these data, of what the expected mobility values will be in the future. The open points are data derived in 2005 from the public journals for verification of the 2002 prediction.6 38... [Pg.382]

G Parthasarathy, PE Burrows, V Khalfin, VG Kozlov, and SR Forrest, A metal-free cathode for organic semiconductor devices, Appl. Phys. Lett., 72 2138-2140, 1998. [Pg.559]

Bloom FL, Wagemans W, Kemerink M, Koopmans B (2007) Separating positive and negative magnetoresistance in organic semiconductor devices. Phys Rev Lett 99 257201... [Pg.299]

Ishii H, Sugiyama K, Ito E, Seki K (1999) Energy level alignment and interfacial electronic structmes at organic/metal and organic/organic interfaces. Adv Mater 11 605 Yan L, Gao Y (2002) Interfaces in organic semiconductor devices. Thin Solid Films 417 101... [Pg.74]

As can be seen from Fig. 4.9, most organic semiconductor devices have simple multilayered structures, which may be fabricated in a straightforward... [Pg.108]

It is important to note that the main drawbacks of organic semiconductor devices are not detrimental to their application in sensors Low-end performance, for example in terms of device speed, prohibits organics semiconductor devices from competing with silicon in high-end computing applications. This does not, however, constitute a limitation, as sensors can tolerate considerably... [Pg.294]

Interface in Organic Semiconductor Devices Dipole Dopings Band Bending, and Growth... [Pg.141]


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Organic devices

Organic semiconductor

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