An Impedance-Based Mold Sensor with on-Chip Optical Reference

A new miniaturized sensor system with an internal optical reference for the detection of mold growth is presented. The sensor chip comprises a reaction chamber provided with a culture medium that promotes the growth of mold species from mold spores. The mold detection is performed by measuring imped...

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Main Authors: Poornachandra Papireddy Vinayaka, Sander van den Driesche, Roland Blank, Muhammad Waseem Tahir, Mathias Frodl, Walter Lang, Michael J. Vellekoop
Format: Article
Language:English
Published: MDPI AG 2016-09-01
Series:Sensors
Subjects:
Online Access:http://www.mdpi.com/1424-8220/16/10/1603
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spelling doaj-3d5f8923f2834cda9600d864848a706e2020-11-25T02:48:02ZengMDPI AGSensors1424-82202016-09-011610160310.3390/s16101603s16101603An Impedance-Based Mold Sensor with on-Chip Optical ReferencePoornachandra Papireddy Vinayaka0Sander van den Driesche1Roland Blank2Muhammad Waseem Tahir3Mathias Frodl4Walter Lang5Michael J. Vellekoop6Institute for Microsensors, Actuators and Systems (IMSAS), University of Bremen, Otto-Hahn-Allee NW1, Bremen 28359, GermanyInstitute for Microsensors, Actuators and Systems (IMSAS), University of Bremen, Otto-Hahn-Allee NW1, Bremen 28359, GermanyInstitute for Microsensors, Actuators and Systems (IMSAS), University of Bremen, Otto-Hahn-Allee NW1, Bremen 28359, GermanyInstitute for Microsensors, Actuators and Systems (IMSAS), University of Bremen, Otto-Hahn-Allee NW1, Bremen 28359, GermanymicroFAB Service GmbH, Bremen 28359, GermanyInstitute for Microsensors, Actuators and Systems (IMSAS), University of Bremen, Otto-Hahn-Allee NW1, Bremen 28359, GermanyInstitute for Microsensors, Actuators and Systems (IMSAS), University of Bremen, Otto-Hahn-Allee NW1, Bremen 28359, GermanyA new miniaturized sensor system with an internal optical reference for the detection of mold growth is presented. The sensor chip comprises a reaction chamber provided with a culture medium that promotes the growth of mold species from mold spores. The mold detection is performed by measuring impedance changes with integrated electrodes fabricated inside the reaction chamber. The impedance change in the culture medium is caused by shifts in the pH (i.e., from 5.5 to 8) as the mold grows. In order to determine the absolute pH value without the need for calibration, a methyl red indicator dye has been added to the culture medium. It changes the color of the medium as the pH passes specific values. This colorimetric principle now acts as a reference measurement. It also allows the sensitivity of the impedance sensor to be established in terms of impedance change per pH unit. Major mold species that are involved in the contamination of food, paper and indoor environments, like Fusarium oxysporum, Fusarium incarnatum, Eurotium amstelodami, Aspergillus penicillioides and Aspergillus restrictus, have been successfully analyzed on-chip.http://www.mdpi.com/1424-8220/16/10/1603moldimpedancecolorimetricculture mediumarchivestransport containers
collection DOAJ
language English
format Article
sources DOAJ
author Poornachandra Papireddy Vinayaka
Sander van den Driesche
Roland Blank
Muhammad Waseem Tahir
Mathias Frodl
Walter Lang
Michael J. Vellekoop
spellingShingle Poornachandra Papireddy Vinayaka
Sander van den Driesche
Roland Blank
Muhammad Waseem Tahir
Mathias Frodl
Walter Lang
Michael J. Vellekoop
An Impedance-Based Mold Sensor with on-Chip Optical Reference
Sensors
mold
impedance
colorimetric
culture medium
archives
transport containers
author_facet Poornachandra Papireddy Vinayaka
Sander van den Driesche
Roland Blank
Muhammad Waseem Tahir
Mathias Frodl
Walter Lang
Michael J. Vellekoop
author_sort Poornachandra Papireddy Vinayaka
title An Impedance-Based Mold Sensor with on-Chip Optical Reference
title_short An Impedance-Based Mold Sensor with on-Chip Optical Reference
title_full An Impedance-Based Mold Sensor with on-Chip Optical Reference
title_fullStr An Impedance-Based Mold Sensor with on-Chip Optical Reference
title_full_unstemmed An Impedance-Based Mold Sensor with on-Chip Optical Reference
title_sort impedance-based mold sensor with on-chip optical reference
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2016-09-01
description A new miniaturized sensor system with an internal optical reference for the detection of mold growth is presented. The sensor chip comprises a reaction chamber provided with a culture medium that promotes the growth of mold species from mold spores. The mold detection is performed by measuring impedance changes with integrated electrodes fabricated inside the reaction chamber. The impedance change in the culture medium is caused by shifts in the pH (i.e., from 5.5 to 8) as the mold grows. In order to determine the absolute pH value without the need for calibration, a methyl red indicator dye has been added to the culture medium. It changes the color of the medium as the pH passes specific values. This colorimetric principle now acts as a reference measurement. It also allows the sensitivity of the impedance sensor to be established in terms of impedance change per pH unit. Major mold species that are involved in the contamination of food, paper and indoor environments, like Fusarium oxysporum, Fusarium incarnatum, Eurotium amstelodami, Aspergillus penicillioides and Aspergillus restrictus, have been successfully analyzed on-chip.
topic mold
impedance
colorimetric
culture medium
archives
transport containers
url http://www.mdpi.com/1424-8220/16/10/1603
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