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August 11, 2025Journal of Materials Chemistry COpen Access

Silicon phthalocyanine-based n-type organic mixed ionic-electronic conductor in organic electrochemical transistors

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Authors

MOMay OurabiUniversity of OttawaMVMário C. VebberUniversity of OttawaMCMélanie CyrUniversity of Ottawa

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Overview

This research demonstrates the fabrication of a phthalocyanine-based n-type organic electrochemical transistor, indicating its potential in electronic applications.

Key Points

  • The research introduces a novel silicon phthalocyanine, expanding materials for organic electrochemical transistors and improving device performance.
  • Hydrophilic axial substitutions enhance the synthesis of the n-type organic ionic-electronic conductor, demonstrating a new approach to organic semiconductors.
  • This work employs a promising material composition in organic electrochemical transistors, suggesting further developments in flexible electronics.
  • The findings call for broader investigations into the applications of phthalocyanines in electronic devices, highlighting potential in sustainable technology.

Cite This Study

Ourabi et al. (2025) studied this question.

synapsesocial.com/papers/68a35efb0a429f79733285b9https://doi.org/10.1039/d5tc02130h
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