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Search Publications by: David Gundlach (Fed)

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Displaying 101 - 125 of 180

Probing Stress Effects in Single Crystal Organic Transistors by Scanning Kelvin Probe Microscopy

May 1, 2010
Author(s)
L C. Teague, Oana Jurchescu, Curt A. Richter, Sanker Subramanian, John E. Anthony, Thomas Jackson, David J. Gundlach, James Kushmerick
We report scanning Kelvin probe microscopy SKPM of single crystal difluoro bistriethylsilylethynyl anthradithiophene diF-TESADT organic transistors. SKPM provides a direct measurement of the intrinsic charge transport in the crystals independent of contact

Flexible Titanium Dioxide Memory

April 25, 2010
Author(s)
Nadine Gergel-Hackett, Laurie Stephey, Barbara Dunlap, Behrang Hamadani, David J. Gundlach, Curt A. Richter

Characterization of Soluble Anthradithiophene Derivatives

March 18, 2010
Author(s)
Brad Conrad, Calvin Chan, Marsha A. Loth, John E. Anthony, David J. Gundlach
We will discuss the growth and electrical measurements of a newly developed, partially fluorinated anthradithiophene (F-ADT) derivative with tert-butyldiphenylsilyl (TBDMS) side groups. Single crystals of the material can be readily grown and device hole

Thin film morphology of organic electronic materials

March 1, 2010
Author(s)
Xinran Zhang, Steven Hudson, Dean DeLongchamp, David J. Gundlach
Organic electronic materials are desired for low-cost printed circuits. As expected, the microstructure of these materials is crucial for their performance, such as charge-carrier mobility. These materials typically comprise anisotropic molecules, and the