π-Conjugated redox-active two-dimensional polymers as organic cathode materials

Jin Z, Cheng Q, Evans AM, Gray J, Zhang R, Bao ST, Wei F, Venkataraman L, Yang Y, Nuckolls C. 2022. π-Conjugated redox-active two-dimensional polymers as organic cathode materials. Chemical Science. 13(12), 3533–3538.

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Author
Jin, Zexin; Cheng, Qian; Evans, Austin M.; Gray, Jesse; Zhang, Ruiwen; Bao, Si Tong; Wei, Fengkai; Venkataraman, LathaISTA ; Yang, Yuan; Nuckolls, Colin
Abstract
Redox-active two-dimensional polymers (RA-2DPs) are promising lithium battery organic cathode materials due to their regular porosities and high chemical stabilities. However, weak electrical conductivities inherent to the non-conjugated molecular motifs used thus far limit device performance and the practical relevance of these materials. We herein address this problem by developing a modular approach to construct π-conjugated RA-2DPs with a new polycyclic aromatic redox-active building block PDI-DA. Efficient imine-condensation between PDI-DA and two polyfunctional amine nodes followed by quantitative alkyl chain removal produced RA-2DPs TAPPy-PDI and TAPB-PDI as conjugated, porous, polycrystalline networks. In-plane conjugation and permanent porosity endow these materials with high electrical conductivity and high ion diffusion rates. As such, both RA-2DPs function as organic cathode materials with good rate performance and excellent cycling stability. Importantly, the improved design enables higher areal mass-loadings than were previously available, which drives a practical demonstration of TAPPy-PDI as the power source for a series of LED lights. Collectively, this investigation discloses viable synthetic methodologies and design principles for the realization of high-performance organic cathode materials.
Publishing Year
Date Published
2022-03-08
Journal Title
Chemical Science
Publisher
Royal Society of Chemistry
Volume
13
Issue
12
Page
3533-3538
ISSN
eISSN
IST-REx-ID

Cite this

Jin Z, Cheng Q, Evans AM, et al. π-Conjugated redox-active two-dimensional polymers as organic cathode materials. Chemical Science. 2022;13(12):3533-3538. doi:10.1039/d1sc07157b
Jin, Z., Cheng, Q., Evans, A. M., Gray, J., Zhang, R., Bao, S. T., … Nuckolls, C. (2022). π-Conjugated redox-active two-dimensional polymers as organic cathode materials. Chemical Science. Royal Society of Chemistry. https://doi.org/10.1039/d1sc07157b
Jin, Zexin, Qian Cheng, Austin M. Evans, Jesse Gray, Ruiwen Zhang, Si Tong Bao, Fengkai Wei, Latha Venkataraman, Yuan Yang, and Colin Nuckolls. “π-Conjugated Redox-Active Two-Dimensional Polymers as Organic Cathode Materials.” Chemical Science. Royal Society of Chemistry, 2022. https://doi.org/10.1039/d1sc07157b.
Z. Jin et al., “π-Conjugated redox-active two-dimensional polymers as organic cathode materials,” Chemical Science, vol. 13, no. 12. Royal Society of Chemistry, pp. 3533–3538, 2022.
Jin Z, Cheng Q, Evans AM, Gray J, Zhang R, Bao ST, Wei F, Venkataraman L, Yang Y, Nuckolls C. 2022. π-Conjugated redox-active two-dimensional polymers as organic cathode materials. Chemical Science. 13(12), 3533–3538.
Jin, Zexin, et al. “π-Conjugated Redox-Active Two-Dimensional Polymers as Organic Cathode Materials.” Chemical Science, vol. 13, no. 12, Royal Society of Chemistry, 2022, pp. 3533–38, doi:10.1039/d1sc07157b.
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