© 2017, Pleiades Publishing, Ltd.The use of hyperbranched polyesterpolyols of different generations favors firmer fixation of carbon nanotubes and silver nanoparticles as components of composite materials on the electrode surface (0.028 mg cm–2), which improves the operation characteristics of monoamine oxidase biosensors. The size of silver nanoparticles (18–52 nm) depends on the conditions for preparing hyperbranched polyesterpolyols, and their use as electrode modifiers influences the analytical possibilities of amperometric biosensors. Silver nanoparticles (18 nm, data of atomic force microscopy) in polyesterpolyols of third generation (pH 10.0) as components of the developed biosensors extend the interval of determinable concentrations...
© 2015, Pleiades Publishing, Ltd. Amperometric biosensors based on planar screen-printed graphite el...
© 2015, Pleiades Publishing, Ltd. Amperometric biosensors based on planar screen-printed graphite el...
© 2016, Pleiades Publishing, Ltd.Modification of a printed graphite electrode surface by carbon nano...
© 2017, Pleiades Publishing, Ltd.The use of hyperbranched polyesterpolyols of different generations ...
© 2017, Pleiades Publishing, Ltd.The use of hyperbranched polyesterpolyols of different generations ...
© 2017, Pleiades Publishing, Ltd.The use of hyperbranched polyesterpolyols of different generations ...
© 2017, Pleiades Publishing, Ltd.Surface modification of screen-printed graphite electrodes with nan...
© 2017, Pleiades Publishing, Ltd.Surface modification of screen-printed graphite electrodes with nan...
© 2017, Pleiades Publishing, Ltd.Surface modification of screen-printed graphite electrodes with nan...
© 2015 Pleiades Publishing, Ltd. Effect of multi-walled carbon nanotubes and silver nanoparticles as...
© 2016, Pleiades Publishing, Ltd.Modification of a printed graphite electrode surface by carbon nano...
© 2015 Pleiades Publishing, Ltd. Effect of multi-walled carbon nanotubes and silver nanoparticles as...
© 2015 Pleiades Publishing, Ltd. Effect of multi-walled carbon nanotubes and silver nanoparticles as...
© 2016, Pleiades Publishing, Ltd.Modification of a printed graphite electrode surface by carbon nano...
© 2015, Pleiades Publishing, Ltd. Amperometric biosensors based on planar screen-printed graphite el...
© 2015, Pleiades Publishing, Ltd. Amperometric biosensors based on planar screen-printed graphite el...
© 2015, Pleiades Publishing, Ltd. Amperometric biosensors based on planar screen-printed graphite el...
© 2016, Pleiades Publishing, Ltd.Modification of a printed graphite electrode surface by carbon nano...
© 2017, Pleiades Publishing, Ltd.The use of hyperbranched polyesterpolyols of different generations ...
© 2017, Pleiades Publishing, Ltd.The use of hyperbranched polyesterpolyols of different generations ...
© 2017, Pleiades Publishing, Ltd.The use of hyperbranched polyesterpolyols of different generations ...
© 2017, Pleiades Publishing, Ltd.Surface modification of screen-printed graphite electrodes with nan...
© 2017, Pleiades Publishing, Ltd.Surface modification of screen-printed graphite electrodes with nan...
© 2017, Pleiades Publishing, Ltd.Surface modification of screen-printed graphite electrodes with nan...
© 2015 Pleiades Publishing, Ltd. Effect of multi-walled carbon nanotubes and silver nanoparticles as...
© 2016, Pleiades Publishing, Ltd.Modification of a printed graphite electrode surface by carbon nano...
© 2015 Pleiades Publishing, Ltd. Effect of multi-walled carbon nanotubes and silver nanoparticles as...
© 2015 Pleiades Publishing, Ltd. Effect of multi-walled carbon nanotubes and silver nanoparticles as...
© 2016, Pleiades Publishing, Ltd.Modification of a printed graphite electrode surface by carbon nano...
© 2015, Pleiades Publishing, Ltd. Amperometric biosensors based on planar screen-printed graphite el...
© 2015, Pleiades Publishing, Ltd. Amperometric biosensors based on planar screen-printed graphite el...
© 2015, Pleiades Publishing, Ltd. Amperometric biosensors based on planar screen-printed graphite el...
© 2016, Pleiades Publishing, Ltd.Modification of a printed graphite electrode surface by carbon nano...