TY - GEN A1 - Panasyuk-Delaney, Tanya A1 - Mirsky, Vladimir M. A1 - Piletsky, Sergey A. A1 - Wolfbeis, Otto S. T1 - Electropolymerized molecularly imprinted polymers as receptor layers in capacitive chemical sensors T2 - Analytical Chemistry N2 - The first application of molecularly imprinted polymers to chemical sensors with capacitive detection is described. The sensitive layer was prepared by electropolymerization of phenol on gold electrodes in the presence of the template (phenylalanine). The insulating properties of the polymer layer were studied by electrochemical impedance spectroscopy. Electrical leakages through the polymer layer were suppressed by deposition of a self-assembled monolayer of mercaptophenol before polymerization and of alkanethiol after polymerization. At the final stage of sensor preparation, the template was removed. The multilayer system obtained displayed a decrease in electrical capacitance on addition of phenylalanine. Only a low response was observed toward other amino acids and phenol. Y1 - 1999 U6 - https://doi.org/10.1021/ac9903196 SN - 0003-2700 SN - 1520-6882 VL - 71 IS - 20 SP - 4609 EP - 4613 ER - TY - GEN A1 - Mirsky, Vladimir M. A1 - Hirsch, Thomas A1 - Panasyuk, Tatiana L. A1 - Piletsky, Sergey A. A1 - Wolfbeis, Otto S. T1 - Two- and three-dimensional artificial chemoreceptors: molecular spreader-bar vs. molecular imprinting T2 - Medical and Biological Engineering and Computing Y1 - 1999 SN - 0140-0118 SN - 1741-0444 VL - 37 IS - suppl.2 SP - 344 EP - 345 ER - TY - GEN A1 - Mirsky, Vladimir M. A1 - Hirsch, Thomas A1 - Piletsky, Sergey A. A1 - Wolfbeis, Otto S. T1 - A spreader-bar approach to molecular architecture: formation of stable artificial chemoreceptors T2 - Angewandte Chemie International Edition N2 - The destructive influence of lateral diffusion on nanostructured monolayers can be prevented by using the spreader-bar technique. This approach allows the formation of stable artificial receptors for barbituric acid by lateral structuring of a dodecanethiol monolayer with molecular spreader-bars from thiobarbituric acid without chemical polymerization (see schematic representation). The new technique may have applications in chemosensors, affinity chromatography, stereoselective catalysis, and molecular electronics. KW - Molecular architecture KW - Molecular recognition KW - Monolayers KW - Nanostructures KW - Sensors Y1 - 1999 U6 - https://doi.org/10.1002/(SICI)1521-3773(19990419)38:8<1108::AID-ANIE1108>3.0.CO;2-C SN - 1521-3773 VL - 38 IS - 8 SP - 1108 EP - 1110 ER -