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Number of items: 10.


Fenzl, Christoph and Kirchinger, Michael and Hirsch, Thomas and Wolfbeis, Otto S. (2014) Photonic Crystal-Based Sensing and Imaging of Potassium Ions. Chemosensors 2, pp. 207-2018.

Zöpfl, Alexander and Lemberger, Michael-Maximilian and König, Matthias and Ruhl, G. and Matysik, Frank-Michael and Hirsch, Thomas (2014) Reduced graphene oxide and graphene composite materials for improved gas sensing at low temperature. Faraday Discussions 173, pp. 403-414.


Wilhelm, Stefan and Hirsch, Thomas and Patterson, Wendy M. and Scheucher, Elisabeth and Mayr, Thorsten and Wolfbeis, Otto S. (2013) Multicolor Upconversion Nanoparticles for Protein Conjugation. Theranostics 3 (4), p. 239.


Fenzl, Christoph and Hirsch, Thomas and Wolfbeis, Otto S. (2012) Photonic Crystal Based Sensor for Organic Solvents and for Solvent-Water Mixtures. Sensors 12 (12), pp. 16954-16963.


Díez-Gil, César and Martínez, Rosario and Ratera, Imma and Hirsch, Thomas and Espinosa, Arturo and Tárraga, Alberto and Molina, Pedro and Wolfbeis, Otto S. and Veciana, Jaume (2011) Selective picomolar detection of mercury(II) using optical sensors. Chemical Communications 47 (6), pp. 1842-1844. Fulltext restricted.


Hirsch, Thomas (2008) Spreader-bar technology: a strategy for formation of stable nanostructured surfaces. PhD, Universität Regensburg.


Hirsch, Thomas and Zharnikov, Michael and Shaporenko, Andrey and Stahl, Joachim and Weiss, Dieter and Wolfbeis, Otto S. and Mirsky, Vladimir M. (2005) Size-Controlled Electrochemical Synthesis of Metal Nanoparticles on Monomolecular Templates. Angewandte Chemie International Edition 44 (41), pp. 6775-6778. Fulltext restricted.


Hirsch, Thomas and Kettenberger, Hubert and Wolfbeis, Otto S. and Mirsky, Vladimir M. (2003) A simple strategy for preparation of sensor arrays: molecularly structured monolayers as recognition elements. Chemical Communications (3), pp. 432-433. Fulltext restricted.

Prodromidis, Mamas I. and Hirsch, Thomas and Mirsky, Vladimir M. and Wolfbeis, Otto S. (2003) Enantioselective Artificial Receptors Formed by the Spreader-Bar Technique. Electroanalysis 15 (22), pp. 1795-1798. Fulltext restricted.


Mirsky, Vladimir M and Hirsch, Thomas and Piletsky, Sergey A. and Wolfbeis, Otto S. (1999) A Spreader-Bar Approach to Molecular Architecture: Formation of Stable Artificial Chemoreceptors. Angewandte Chemie International Edition 38 (8), pp. 1108-1110. Fulltext restricted.

This list was generated on Sat Feb 13 22:31:17 2016 CET.
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