Gundlach et al., “Pentacene Organic Thin-Film Transistors—Molecular Ordering and Mobility”, IEEE Electron Device Letters, vol. 18, No. 3, Mar. 1997, pp. 87-90. |
Lin et al., “Pentacene-Based Organic Thin Film Transistors”, IEEE Transactions on Electron Devices, vol. 44, No. 8, Aug. 1997, pp. 1325-1331. |
Lin et al., “Stacked Pentacene Layer Organic Thin-Film Transistors with Improved Characteristics”, IEEE Electron Device Letters, vol. 18, No. 12, Dec. 1997, pp. 606-608. |
Drury et al., “Low-cost all-polymer integrated circuits”, Applied Physics Letters, vol. 73, No. 1, Jul. 1998, pp. 108-110. |
Klauk et al., “Pentacene Organic Thin-Film Transistors for Circuit and Display Applications”, IEEE Transactions on Electron Devices, vol. 46, No. 6, Jun. 1999, pp. 1258-1263. |
Gundlach et al., “High-Mobility, Low Voltage Organic Thin Film Transistors”, 1999 International Electron Devices Meeting Technical Digest, Dec. 1999, pp. 111-114. |
Bao, “Materials and Fabrication Needs for Low-Cost Organic Transistor Circuits”, Advanced Materials, 2000. |
Tate et al., “Anodization and Microcontact Printing on Electroless Silver: Solution-Based Fabrication Procedures for Low-Voltage Electronic Systems with Organic Active Components”, Langmuir, 16, 2000, pp. 6054-6060. |
Crone et al., “Large-scale complementary integrated circuits based on organic transistors”, Nature, vol. 403, Feb. 2000, pp. 521-523. |
Klauk et al., “Pentacene organic thin-film transistors and ICs”, Solid State Technology, Mar. 2000, pp. 63-64, 66-67, 72, 75 and 77. |
Klauk et al., “A reduced complexity process for organic thin film transistors”, Applied Physics Letters, vol. 76, No. 13, Mar. 2000, pp. 1692-1693. |
Rogers et al., “Organic Smart Pixels and Complementary Inverter Circuits Formed on Plasic Substrates by Casting and Rubber Stamping”, IEEE Electron Devices Letters, vol. 21, No. 3, Mar. 2000, pp. 100-103. |
Kane et al., “Analog and Digital Circuits Using Organic Thin-Film Transistors on Polyester Substrates”, IEEE Electron Device Letters, vol. 21, No. 11, Nov. 2000, pp. 534-536. |
Gundlach et al., “Improved Organic Thin Film Transistor Performance Using Chemically-Modified Gate Dielectrics”, Proc.SPIE, vol. 4466, 2001, pp. 54-64. |
Marshall, “Welcome to Plastic Valley”, Business 2.0, Jan. 2001, 3 pages. |
Meyer zu Heringdorf et al., “Growth dynamics of pentacene thin films”, Nature, vol. 412, Aug. 2001, pp. 517-520. |
Swiggers et al., “Orientation of pentacene films using surface alignment layers and its influence on thin-film transistor characteristics”, Applied Physics Letters, vol. 79, No. 9, Aug. 2001, pp. 1300-1302. |
Kagan et al., “Patterning orgain-inorganic thin-film transistors using microcontact printed templates”, Applied Physics Letters, vol. 79, No. 21, Nov. 2001, pp. 3536-3538. |
Kelley et al., U.S. application Ser. No. 09/947,845, filed Sep. 6, 2001, entitled “Surface Modifying Layers for Organic Thin Film Transistors”. |
Vogel et al., U.S. application Ser. No. 09/966,954, filed Sep. 27, 2001, entitled “Process for preparing Pentacene Derivatives”. |
Smith et al., U.S. application Ser. No. 09/966,961, filed Sep. 27, 2001, entitled “Substituted Pentacene Semiconductors”. |