Redox‐Active Organic Molecules Supported by Polyhedral Oligomeric Silsesquioxane

Author:

Tanaka Ryota1,Kitajima Showa2,Tohnai Norimitsu2ORCID,Oka Kouki23ORCID,Imoto Hiroaki14ORCID,Naka Kensuke15ORCID

Affiliation:

1. Faculty of Molecular Chemistry and Engineering Kyoto Institute of Technology, Goshokaido-cho, Matsugasaki, Sakyo-ku Kyoto 606-8585 Japan

2. Center for Future Innovation (Cfi) and Department of Applied Chemistry, Graduate School of Engineering Osaka University, 2–1 Yamadaoka, Suita Osaka 565-0871 Japan

3. Institute of Multidisciplinary Research for Advanced Materials Tohoku University, 2–1-1 Katahira, Aoba-ku Sendai Miyagi 980-8577 Japan

4. FOREST JST, Honcho 4–1-8 Kawaguchi Saitama 332-0012 Japan

5. Materials Innovation Lab Kyoto Institute of Technology, Goshokaido-cho, Matsugasaki, Sakyo-ku Kyoto 606-8585 Japan

Abstract

AbstractOrganic redox molecules have attracted considerable attention because of their abundant availability and excellent design flexibility. For practical applications, these molecules must be anchored onto scaffolds such as polymers to prevent crystallization and elution into the electrolyte. In this study, we explore the use of polyhedral oligomeric silsesquioxane (POSS) derivatives as scaffolds for anthraquinone (AQ) and hydroquinone. We investigated the cage structure of POSS and the number of redox units incorporated. Notably, a corner‐opened POSS (CO‐POSS) variant with three AQ units exhibited reversible redox behavior under neutral, acidic, and basic conditions. Furthermore, we examined the air‐battery performance of AQ‐modified CO‐POSS as an anode‐active material.

Funder

Iwatani Naoji Foundation

Publisher

Wiley

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