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Dive into the research topics where Franz Prof. Dr. Effenberger is active.

Publication


Featured researches published by Franz Prof. Dr. Effenberger.


Nature | 2004

Low-voltage organic transistors with an amorphous molecular gate dielectric

Marcus Halik; Hagen Klauk; Ute Zschieschang; Günter Schmid; Christine Dr. Dehm; Markus Dr. Schütz; Steffen Maisch; Franz Prof. Dr. Effenberger; Markus Brunnbauer; Francesco Stellacci

Organic thin film transistors (TFTs) are of interest for a variety of large-area electronic applications, such as displays, sensors and electronic barcodes. One of the key problems with existing organic TFTs is their large operating voltage, which often exceeds 20 V. This is due to poor capacitive coupling through relatively thick gate dielectric layers: these dielectrics are usually either inorganic oxides or nitrides, or insulating polymers, and are often thicker than 100 nm to minimize gate leakage currents. Here we demonstrate a manufacturing process for TFTs with a 2.5-nm-thick molecular self-assembled monolayer (SAM) gate dielectric and a high-mobility organic semiconductor (pentacene). These TFTs operate with supply voltages of less than 2 V, yet have gate currents that are lower than those of advanced silicon field-effect transistors with SiO2 dielectrics. These results should therefore increase the prospects of using organic TFTs in low-power applications (such as portable devices). Moreover, molecular SAMs may even be of interest for advanced silicon transistors where the continued reduction in dielectric thickness leads to ever greater gate leakage and power dissipation.


Nano Letters | 2007

High-Performance Carbon Nanotube Field Effect Transistors with a Thin Gate Dielectric Based on a Self-Assembled Monolayer

Ralf Thomas Weitz; Ute Zschieschang; Franz Prof. Dr. Effenberger; Hagen Klauk; Marko Burghard; Klaus Kern


Archive | 2004

Kondensator mit einem Dielektrikum aus einer selbstorganisierten Monoschicht einer organischen Verbindung und Verfahren zu dessen Herstellung

Franz Prof. Dr. Effenberger; Marcus Halik; Hagen Klauk; Günter Schmid; Ute Zschieschang


Archive | 2005

Ultradünne Dielektrika und deren Anwendung in organischen Feldeffekt-Transistoren

Franz Prof. Dr. Effenberger; Marcus Halik; Hagen Klauk; Günter Schmid; Ute Zschieschang


Archive | 2004

Kondensator mit einem Dielektrikum aus einer selbstorganisierten Monoschicht einer organischen Verbindung Capacitor having a dielectric made of a self-assembled monolayer an organic compound

Franz Prof. Dr. Effenberger; Marcus Halik; Hagen Klauk; Günter Schmid; Ute Zschieschang


Archive | 2004

Ultra-thin dielectrics, and their use in organic field-effect transistors

Franz Prof. Dr. Effenberger; Marcus Halik; Hagen Klauk; Günter Schmid; Ute Zschieschang


Archive | 2004

Ultradünne Dielektrika und deren Anwendung in organischen Feldeffekt-Transistoren Ultrathin Dielectrics and their application in organic field-effect transistors

Franz Prof. Dr. Effenberger; Marcus Halik; Hagen Klauk; Günter Schmid; Ute Zschieschang


Archive | 2004

Kondensator mit einem Dielektrikum aus einer selbstorganisierten Monoschicht einer organischen Verbindung und Verfahren zu dessen Herstellung Capacitor having a dielectric made of a self-assembled monolayer of an organic compound and methods for its preparation

Franz Prof. Dr. Effenberger; Marcus Halik; Hagen Klauk; Günter Schmid; Ute Zschieschang


Archive | 2004

Methode zur Synthese von langkettigen Phosphonsäurederivaten und Thiolderivaten Method for the synthesis of long-chain phosphonic acid and thiol derivatives

Franz Prof. Dr. Effenberger; Marcus Halik; Hagen Klauk; Steffen Maisch; Guenter Schmid; Steffen Seifritz; Ute Zschieschang


Archive | 2004

Capacitor having a dielectric made of a self-assembled monolayer of an organic compound and methods for its preparation

Franz Prof. Dr. Effenberger; Marcus Halik; Hagen Klauk; Günter Schmid; Ute Zschieschang

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Markus Brunnbauer

Massachusetts Institute of Technology

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