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Dive into the research topics where Erika Rebrosova is active.

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Featured researches published by Erika Rebrosova.


IEEE\/OSA Journal of Display Technology | 2012

Gravure Printing of ITO Transparent Electrodes for Applications in Flexible Electronics

Dania Alsaid; Erika Rebrosova; Margaret K. Joyce; Marian Rebros; Massood Z. Atashbar; Bradley J. Bazuin

The possibility to directly pattern indium-tin-oxide (ITO) layers at ambient conditions by printing has many benefits. Printing, being an additive process, would greatly reduce the amount of energy, labor and material used by the current manufacturing processes to deposit and pattern ITO. In this work, gravure printability of ITO nanoparticles on polyethylene terephthalate (PET) was studied. A wide range of sheet resistivites and film thicknesses was obtained by varying the specifications of the gravure cells. From the regression analysis of the results, a good estimation of sheet resistivity of the printed films at different gravure cell volumes and aspect ratios (AR) was achieved. The films also showed transparency above 95% in the visible light region. In addition, printed ITO films were assessed for mechanical flexibility and the results compared to commercially available sputtered ITO films on PET. The electrical performance of printed ITO layers was not deteriorated with bending in contrast to the sputtered films. Therefore, printed ITO films can be of great benefit for applications in flexible electronics such as organic photovoltaics (OPV), liquid crystal displays (LCD), organic light-emitting diodes (OLED), touch screens, biosensors and utilization in the field of energy efficiency, especially in buildings.


ieee sensors | 2012

A novel fully printed and flexible capacitive pressure sensor

Binu Baby Narakathu; Ali Eshkeiti; Avuthu Sai Guruva Reddy; Marian Rebros; Erika Rebrosova; Margaret K. Joyce; Bradley J. Bazuin; Massood Z. Atashbar

A novel fully printed flexible capacitive pressure sensor was fabricated using conventional screen and gravure printing techniques. The sensor was successfully printed on a flexible polyethylene terephthalate (PET) substrate with silver (Ag) nanoparticle (NP) ink as the metallization layer and polydimethylsiloxane (PDMS) as the dielectric layer. The capacitive response of the sensor demonstrated a percentage change of 5 % and 40 % for minimum and maximum detectable compressive forces of 800 kPa and 18 MPa, respectively when compared to the base capacitance of 26 pF. At the minimum detectable pressure, the stability measurements resulted in a maximum variation of ± 0.15 % from the average capacitance value of 28 pf. The response of the printed device demonstrated the feasibility of employing traditional printing techniques for the fabrication of flexible pressure sensing devices.


ieee sensors | 2011

A novel gravure printed impedance based flexible electrochemical sensor

Binu Baby Narakathu; Sai Guruva Avuthu Reddy; Massood Z. Atashbar; Erika Rebrosova; Marian Rebros; Margaret K. Joyce

A novel flexible electrochemical sensor was successfully gravure printed on a polyethylene terephthalate (PET) film with silver (Ag) electrodes using Ag nanoparticle based ink. The sensor consisted of a circular working electrode with diameter of 1700 µm and a counter electrode with outer and inner diameter of 3900 µm and 2900 µm, respectively. The capability of the fabricated sensor for detecting very low concentrations of toxic chemicals was demonstrated. The electrochemical impedance spectroscopy (EIS) response of the printed sensor revealed a very high sensitivity at pico molar (pM) concentration levels of mercury sulfide (HgS), lead sulfide (PbS), D-proline and sarcosine.


Proceedings IMCS 2012 | 2012

P1.9.12 Fully printed wireless LC sensor for heavy metal detection

Avuthu Sai Guruva Reddy; Ali Eshkeiti; Binu Baby Narakathu; Marian Rebros; Erika Rebrosova; Margaret K. Joyce; Massood Z. Atashbar

This paper reports on the successful development of a fully printed wireless LC sensor for the detection of toxic heavy metals. The sensor, consisting of an inductor, detection coil and interdigitated electrodes (IDE) in planar form, was fabricated using screen and gravure printing technologies on a flexible polyethylene-terephthalate (PET) substrate with silver based ink as metallization. The capability of the printed LC sensor for detecting very low concentrations of toxic heavy metals was demonstrated. The wireless response of the printed LC sensor revealed a very high sensitivity at picomolar levels of cadmium sulphide (CdS) and lead sulphide (PbS).


Procedia Engineering | 2011

Fully printed flexible humidity sensor

Avuthu Sai Guruva Reddy; Binu Baby Narakathu; Massood Z. Atashbar; Marian Rebros; Erika Rebrosova; Margaret K. Joyce


Sensors and Actuators B-chemical | 2012

Detection of heavy metal compounds using a novel inkjet printed surface enhanced Raman spectroscopy (SERS) substrate

Ali Eshkeiti; Binu Baby Narakathu; Avuthu Sai Guruva Reddy; A. Moorthi; Massood Z. Atashbar; Erika Rebrosova; Marian Rebros; Margaret K. Joyce


Sensor Letters | 2011

Printed Capacitive Based Humidity Sensors on Flexible Substrates

Avuthu Sai Guruva Reddy; Binu Baby Narakathu; Massood Z. Atashbar; Marian Rebros; Erika Rebrosova; Bradley J. Bazuin; Margaret K. Joyce; Paul D. Fleming; Alexandra Pekarovicova


Sensors and Actuators B-chemical | 2013

Novel fully screen printed flexible electrochemical sensor for the investigation of electron transfer between thiol functionalized viologen and gold clusters

Binu Baby Narakathu; Mary Sajini Devadas; Avuthu Sai Guruva Reddy; Ali Eshkeiti; Akhil Moorthi; Isurika R. Fernando; Bazsa P. Miller; Guda Ramakrishna; Ekkehard Sinn; Margaret K. Joyce; Marian Rebros; Erika Rebrosova; Gellert Mezei; Massood Z. Atashbar


Procedia Engineering | 2011

Gravure Printed Electrochemical Biosensor

Avuthu Sai Guruva Reddy; Binu Baby Narakathu; Massood Z. Atashbar; Marian Rebros; Erika Rebrosova; Margaret K. Joyce


IPC APEX EXPO Conference and Exhibition 2013, APEX EXPO 2013 | 2013

Gravure printing of ITO transparent electrodes for applications in printed electronics

Dania Alsaid; Margaret K. Joyce; Erika Rebrosova; Marian Rebros; Massood Z. Atashbar

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Margaret K. Joyce

Western Michigan University

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Marian Rebros

Western Michigan University

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Ali Eshkeiti

Western Michigan University

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Bradley J. Bazuin

Western Michigan University

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Dania Alsaid

Western Michigan University

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A. Moorthi

Western Michigan University

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Akhil Moorthi

Western Michigan University

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