Broad-Range Hydrogel-Based pH Sensor with Capacitive Readout Manufactured on a Flexible Substrate
Environmental monitoring of land, water and air, is an area receiving greater attention because of human health and safety concerns. Monitoring the type of pollution and concentration levels is vital, so that appropriate contingency plans can be determined. To effectively monitor the environment, th...
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doaj-c994e9d536604a669ccb0eca6562b41e2020-11-25T00:20:31ZengMDPI AGChemosensors2227-90402018-07-01633010.3390/chemosensors6030030chemosensors6030030Broad-Range Hydrogel-Based pH Sensor with Capacitive Readout Manufactured on a Flexible SubstrateKrister Hammarling0Magnus Engholm1Henrik Andersson2Mats Sandberg3Hans-Erik Nilsson4Department of Electronics, Mid Sweden University, Holmgatan 10, 851 70 Sundsvall, SwedenDepartment of Electronics, Mid Sweden University, Holmgatan 10, 851 70 Sundsvall, SwedenDepartment of Electronics, Mid Sweden University, Holmgatan 10, 851 70 Sundsvall, SwedenDepartment of Electronics, Mid Sweden University, Holmgatan 10, 851 70 Sundsvall, SwedenDepartment of Electronics, Mid Sweden University, Holmgatan 10, 851 70 Sundsvall, SwedenEnvironmental monitoring of land, water and air, is an area receiving greater attention because of human health and safety concerns. Monitoring the type of pollution and concentration levels is vital, so that appropriate contingency plans can be determined. To effectively monitor the environment, there is a need for new sensors and sensor systems that suits these type of measurements. However, the diversity of sensors suitable for low, battery powered- and large area sensor systems are limited. We have manufactured and characterized a flexible pH sensor using laser processing and blade coating techniques that is able to measure pH between 2.94 and 11.80. The sensor consists of an interdigital capacitance with a pH sensitive hydrogel coating. Thin sensors can reach 95% of their final value value within 3 min, and are stable after 4 min. Good repeatability was achieved in regard to cycling of the sensor with different pH and multiple measurements from dry state. We have also studied the relation between an interdigital capacitance penetration depth and hydrogels expansion. We believe that our passive sensor is suitable to be used in low power and large area sensor networks.http://www.mdpi.com/2227-9040/6/3/30interdigitalhydrogelpenetration depthpHsensorcoatingthin filmlaser ablationoligo (β-amino esters) |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Krister Hammarling Magnus Engholm Henrik Andersson Mats Sandberg Hans-Erik Nilsson |
spellingShingle |
Krister Hammarling Magnus Engholm Henrik Andersson Mats Sandberg Hans-Erik Nilsson Broad-Range Hydrogel-Based pH Sensor with Capacitive Readout Manufactured on a Flexible Substrate Chemosensors interdigital hydrogel penetration depth pH sensor coating thin film laser ablation oligo (β-amino esters) |
author_facet |
Krister Hammarling Magnus Engholm Henrik Andersson Mats Sandberg Hans-Erik Nilsson |
author_sort |
Krister Hammarling |
title |
Broad-Range Hydrogel-Based pH Sensor with Capacitive Readout Manufactured on a Flexible Substrate |
title_short |
Broad-Range Hydrogel-Based pH Sensor with Capacitive Readout Manufactured on a Flexible Substrate |
title_full |
Broad-Range Hydrogel-Based pH Sensor with Capacitive Readout Manufactured on a Flexible Substrate |
title_fullStr |
Broad-Range Hydrogel-Based pH Sensor with Capacitive Readout Manufactured on a Flexible Substrate |
title_full_unstemmed |
Broad-Range Hydrogel-Based pH Sensor with Capacitive Readout Manufactured on a Flexible Substrate |
title_sort |
broad-range hydrogel-based ph sensor with capacitive readout manufactured on a flexible substrate |
publisher |
MDPI AG |
series |
Chemosensors |
issn |
2227-9040 |
publishDate |
2018-07-01 |
description |
Environmental monitoring of land, water and air, is an area receiving greater attention because of human health and safety concerns. Monitoring the type of pollution and concentration levels is vital, so that appropriate contingency plans can be determined. To effectively monitor the environment, there is a need for new sensors and sensor systems that suits these type of measurements. However, the diversity of sensors suitable for low, battery powered- and large area sensor systems are limited. We have manufactured and characterized a flexible pH sensor using laser processing and blade coating techniques that is able to measure pH between 2.94 and 11.80. The sensor consists of an interdigital capacitance with a pH sensitive hydrogel coating. Thin sensors can reach 95% of their final value value within 3 min, and are stable after 4 min. Good repeatability was achieved in regard to cycling of the sensor with different pH and multiple measurements from dry state. We have also studied the relation between an interdigital capacitance penetration depth and hydrogels expansion. We believe that our passive sensor is suitable to be used in low power and large area sensor networks. |
topic |
interdigital hydrogel penetration depth pH sensor coating thin film laser ablation oligo (β-amino esters) |
url |
http://www.mdpi.com/2227-9040/6/3/30 |
work_keys_str_mv |
AT kristerhammarling broadrangehydrogelbasedphsensorwithcapacitivereadoutmanufacturedonaflexiblesubstrate AT magnusengholm broadrangehydrogelbasedphsensorwithcapacitivereadoutmanufacturedonaflexiblesubstrate AT henrikandersson broadrangehydrogelbasedphsensorwithcapacitivereadoutmanufacturedonaflexiblesubstrate AT matssandberg broadrangehydrogelbasedphsensorwithcapacitivereadoutmanufacturedonaflexiblesubstrate AT hanseriknilsson broadrangehydrogelbasedphsensorwithcapacitivereadoutmanufacturedonaflexiblesubstrate |
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1725366974718935040 |