Potential Application of Organic Electronics in Electrical Sensing of Insects and Integrated Pest Management towards Developing Ecofriendly Replacements for Chemical Insecticides

Author:

Petrauskas Lautaro N.1ORCID,Haase Katherina2ORCID,Schmidt Georg C.3ORCID,Hübler Arved C.3,Mannsfeld Stefan C. B.24ORCID,Ellinger Frank14ORCID,Boroujeni Bahman K.14ORCID

Affiliation:

1. Chair for Circuit Design and Network Theory (CCN) Faculty of Electrical and Computer Engineering Technische Universität Dresden 01069 Dresden Germany

2. Chair of Organic Devices Faculty of Electrical and Computer Engineering Technische Universität Dresden 01069 Dresden Germany

3. Institute for Print and Media Technology Technische Universität Chemnitz 09126 Chemnitz Germany

4. Center for Advancing Electronics Dresden (cfaed) Technische Universität Dresden 01069 Dresden Germany

Abstract

AbstractSynthetic insecticides are widely used against plant pest insects to protect the crops. However, many insecticides have poor selectivity and are toxic also to beneficial insects, animals, and humans. In addition, insecticide residues can remain on fruits for many days, jeopardizing food safety. For these reasons, a reusable, low‐cost electronic trap that can attract, detect, and identify, but attack only the pest while leaving beneficial insects unharmed could provide a sustainable, nature‐friendly replacement. Here, for the first time, research results are presented suggesting the great potential and compatibility of organic electronic devices and technologies with pest management. Electrical characterizations confirm that an insect's body has relatively high dielectric permittivity. Adaptive memcapacitor circuits can track the impedance change for insect detection. Other experiments show that printed polymer piezoelectric transducers on a plastic substrate can collect information about the weight and activity of insects for identification. The breakdown voltage of most insects´ integument is measured to be <200 V. Long channel organic transistors easily work at such high voltages while being safe to touch for humans thanks to their inherent low current. This feasibility study paves the way for the future development of organic electronics for physical pest control and biodiversity protection.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)

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