Towards Sustainable Temperature Sensor Production through CO2-Derived Polycarbonate-Based Composites

Author:

Martín-Ayerdi Ane1,Rubio-Peña Luis2ORCID,Peřinka Nikola1ORCID,Oyarzabal Itziar13,Vilas José L.14ORCID,Costa Pedro56ORCID,Lanceros-Méndez Senentxu135ORCID

Affiliation:

1. BCMaterials, Basque Center for Materials, Applications and Nanostructures, UPV/EHU Science Park, 48940 Leioa, Spain

2. Engineering School, University of Cadiz, Avda. de la Universidad de Cádiz, 10, 11519 Puerto Real, Spain

3. IKERBASQUE, Basque Foundation for Science, 48013 Bilbao, Spain

4. Macromolecular Chemistry Group (LABQUIMAC), Department of Physical Chemistry, Faculty of Science and Technology, University of the Basque Country (UPV/EHU), Barrio Sarriena s/n, 48940 Leioa, Spain

5. Physics Centre of Minho and Porto Universities (CF-UM-UP) and Laboratory of Physics for Materials and Emergent Technologies (LapMET), University of Minho, Campus of Gualtar, 4710-057 Braga, Portugal

6. IB-S Institute of Science and Innovation for Sustainability, Universidade do Minho, 4710-057 Braga, Portugal

Abstract

The steep increase in carbon dioxide (CO2) emissions has created great concern due to its role in the greenhouse effect and global warming. One approach to mitigate CO2 levels involves its application in specific technologies. In this context, CO2 can be used for a more sustainable synthesis of polycarbonates (CO2-PCs). In this research, CO2-PC films and composites with multiwalled carbon nanotubes (MWCNTs, ranging from 0.2 to 7.0 wt.%) have been prepared to achieve more sustainable multifunctional sensing devices. The inclusion of the carbonaceous fillers allows for the electrical conductivity to be enhanced, reaching the percolation threshold (Pc) at 0.1 wt.% MWCNTs and a maximum electrical conductivity of 0.107 S·m−1 for the composite containing 1.5 wt.% MWCNTs. The composite containing 3.0 wt.% MWCNTs was also studied, showing a stable and linear response under temperature variations from 40 to 100 °C and from 30 to 45 °C, with a sensitivity of 1.3 × 10−4 °C−1. Thus, this investigation demonstrates the possibility of employing CO2-derived PC/MWCNT composites as thermoresistive sensing materials, allowing for the transition towards sustainable polymer-based electronics.

Funder

Basque Government Industry Department

Elkartek program

Advanced Materials program

MCIN

European Union NextGenerationEU

Basque Government

IKUR program

Fundação para a Ciência e Tecnologia

Education Department of the Government of the Basque Country

Publisher

MDPI AG

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