Multifunctional hydrogel‐based electrolytes for thermoelectrochromic devices

Author:

Cannavale Alessandro12,Pugliese Marco2,De Matteis Valeria34,Giannuzzi Roberto3,Mancarella Francesca3,Valenzano Vitantonio2,Ayr Ubaldo1,Liuzzi Stefania1,Maiorano Vincenzo2,Berardi Umberto5ORCID,Gigli Giuseppe23

Affiliation:

1. Department of Architecture, Construction and Design Polytechnic University of Bari Bari Italy

2. National Research Council Institute of Nanotechnology (CNR‐NANOTEC) Lecce Italy

3. Department of Mathematics and Physics “Ennio De Giorgi” University of Salento Lecce Italy

4. Institute for Microelectronics and Microsystems (IMM) CNR Lecce Italy

5. Department of Architectural Science Toronto Metropolitan University Canada

Abstract

AbstractIn this work, we presented a new thermoelectrochromic device based on the preparation of a hydrogel‐based electrolyte derived from cellulose, namely hydroxypropyl cellulose, with thermochromic properties and a good ion conduction at atmospheric conditions. With these premises, an electrochromic layer of PEDOT:PSS was developed to fabricate a multifunctional device capable of exploiting the TC properties of HCP when the critical temperature of 43°C is reached, where an increase in reflectance of 37% at 420 nm is reported and, at the same time, capable of undergoing a significant modulation of transmittance (52% at 650 nm) when a small external bias (2.5 V) is applied. To our knowledge, it is the first time that a smart window is designed embodying HPC and PEDOT:PSS in a single device, reporting a fully organic system suitable for several applications, from constructions to transportation.

Funder

Natural Sciences and Engineering Research Council of Canada

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Surfaces, Coatings and Films,General Chemistry

Reference52 articles.

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