Foto del docente

Tobias Cramer

Professore associato

Dipartimento di Fisica e Astronomia "Augusto Righi"

Settore scientifico disciplinare: FIS/03 FISICA DELLA MATERIA

Pubblicazioni

S. Casalini; A. C. Dumitru; F. Leonardi; C. A. Bortolotti; E. T. Herruzo; A. Campana; R. F. De Oliveira; T. Cramer; R. Garcia; F. Biscarini, Multiscale Sensing of Antibody - Antigen Interactions by Organic Transistors and Single-Molecule Force Spectroscopy, «ACS NANO», 2015, 9, pp. 5051 - 5062 [articolo]Open Access

Alessandra Campana;Tobias Cramer;Daniel T. Simon;Magnus Berggren;Fabio Biscarini, Electrocardiographic Recording with Conformable Organic Electrochemical Transistor Fabricated on Resorbable Bioscaffold, «ADVANCED MATERIALS», 2014, 26, pp. 3874 - 3878 [articolo]

A. F. Basile;T. Cramer;A. Kyndiah;F. Biscarini;B. Fraboni, Trap densities and transport properties of pentacene metal-oxide-semiconductor transistors. I. Analytical modeling of time-dependent characteristics, «JOURNAL OF APPLIED PHYSICS», 2014, 115, pp. 244504 - 244510 [articolo]

Alessandra Campana;Tobias Cramer;Pierpaolo Greco;Giulia Foschi;Mauro Murgia;Fabio Biscarini, Facile maskless fabrication of organic field effect transistors on biodegradable substrates, «APPLIED PHYSICS LETTERS», 2013, 103, Article number: 073302, pp. 1 - 5 [articolo]

Denis Gentili;Prashant Sonar;Fabiola Liscio;Tobias Cramer;Laura Ferlauto;Francesca Leonardi;Silvia Milita;Ananth Dodabalapur;Massimiliano Cavallini, Logic-Gate Devices Based on Printed Polymer Semiconducting Nanostripes, «NANO LETTERS», 2013, 13, pp. 3643 - 3647 [articolo]

Stefano Casalini;Tobias Cramer;Francesca Leonardi;Massimiliano Cavallini;Fabio Biscarini, Low-Dimensionality Effects in Organic Field Effect Transistors, in: Organic Nanomaterials, Weinheim, Wiley-VCH Verlag GmbH & Co, 2013, pp. 397 - 419 [capitolo di libro]

Stefano Casalini;Francesca Leonardi;Tobias Cramer;Fabio Biscarini, Organic field-effect transistor for label-free dopamine sensing, «ORGANIC ELECTRONICS», 2013, 14, pp. 156 - 163 [articolo]

Tobias Cramer;Beatrice Chelli;Mauro Murgia;Marianna Barbalinardo;Eva Bystrenova;Dago M. de Leeuw;Fabio Biscarini, Organic ultra-thin film transistors with a liquid gate for extracellular stimulation and recording of electric activity of stem cell-derived neuronal networks, «PHYSICAL CHEMISTRY CHEMICAL PHYSICS», 2013, 15, pp. 3897 - 3905 [articolo]

Kamal Asadi;Auke J. Kronemeijer;Tobias Cramer;L. Jan Anton Koster;Paul W. M. Blom;Dago M. de Leeuw, Polaron hopping mediated by nuclear tunnelling in semiconducting polymers at high carrier density, «NATURE COMMUNICATIONS», 2013, 4, pp. 1710 - 1717 [articolo]

T. Cramer;A. Campana;F. Leonardi;S. Casalini;A. Kyndiah;M. Murgia;F. Biscarini, Water-gated organic field effect transistors – opportunities for biochemical sensing and extracellular signal transduction, «JOURNAL OF MATERIALS CHEMISTRY. B», 2013, 1, pp. 3728 - 3741 [articolo]

T. Cramer;A. Kyndiah;M. Murgia;F. Leonardi;S. Casalini;F. Biscarini, Double layer capacitance measured by organic field effect transistor operated in water, «APPLIED PHYSICS LETTERS», 2012, 100, Article number: 143302, pp. 1 - 4 [articolo]

J. J. Brondijk;W. S. C. Roelofs;S. G. J. Mathijssen;A. Shehu;T. Cramer;F. Biscarini;P. W. M. Blom;D. M. de Leeuw, Two-Dimensional Charge Transport in Disordered Organic Semiconductors, «PHYSICAL REVIEW LETTERS», 2012, 109, Article number: 056601, pp. 1 - 5 [articolo]

Stephan Dech;Tobias Cramer;Reinhild Ladisch;Nico Bruns;Joerg C. Tiller, Solid−Solid Interface Adsorption of Proteins and Enzymes in Nanophase-Separated Amphiphilic Conetworks, «BIOMACROMOLECULES», 2011, 12, pp. 1594 - 1601 [articolo]

A. Sharma;S. G. J. Mathijssen;T. Cramer;M. Kemerink;D. M. de Leeuw;P. A. Bobbert, Anomalous current transients in organic field-effect transistors, «APPLIED PHYSICS LETTERS», 2010, 96, Article number: 103306, pp. 1 - 3 [articolo]

Spijkman M.-J.; Brondijk J.J.; Geuns T.C.T.; Smits E. C. P.; Cramer T.; Zerbetto F.; Stoliar P.; Biscarini F.; Blom P. W. M.; de Leeuw D. M ., Dual-gate organic field-effect transistors as potentiometric sensors in aqueous solution, «ADVANCED FUNCTIONAL MATERIALS», 2010, 20, pp. 898 - 905 [articolo]