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Title Evaluating the Effect of Iron(III) in the Preparation of a Conductive Porous Composite Using a Biomass Waste-Based Starch Template
ID_Doc 29174
Authors Rodríguez-Quesada, L; Ramírez-Sánchez, K; León-Carvajal, S; Sáenz-Arce, G; Vásquez-Sancho, F; Avendaño-Soto, E; Montero-Rodríguez, JJ; Starbird-Perez, R
Title Evaluating the Effect of Iron(III) in the Preparation of a Conductive Porous Composite Using a Biomass Waste-Based Starch Template
Year 2023
Published Polymers, 15.0, 11
DOI 10.3390/polym15112560
Abstract In this work, the effect of iron(III) in the preparation of a conductive porous composite using a biomass waste-based starch template was evaluated. Biopolymers are obtained from natural sources, for instance, starch from potato waste, and its conversion into value-added products is highly significant in a circular economy. The biomass starch-based conductive cryogel was polymerized via chemical oxidation of 3,4-ethylenedioxythiophene (EDOT) using iron(III) p-toluenesulfonate as a strategy to functionalize porous biopolymers. Thermal, spectrophotometric, physical, and chemical properties of the starch template, starch/iron(III), and the conductive polymer composites were evaluated. The impedance data of the conductive polymer deposited onto the starch template confirmed that at a longer soaking time, the electrical performance of the composite was improved, slightly modifying its microstructure. The functionalization of porous cryogels and aerogels using polysaccharides as raw materials is of great interest for applications in electronic, environmental, and biological fields.
Author Keywords biopolymer; porous material; starch; conductive composites; biomass waste
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Science Citation Index Expanded (SCI-EXPANDED)
EID WOS:001005752000001
WoS Category Polymer Science
Research Area Polymer Science
PDF https://www.mdpi.com/2073-4360/15/11/2560/pdf?version=1685699025
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