4.7 Article

Sustainable Cathodes for Lithium-Ion Energy Storage Devices Based on Tannic Acid-Toward Ecofriendly Energy Storage

期刊

ADVANCED SUSTAINABLE SYSTEMS
卷 5, 期 1, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adsu.202000206

关键词

biomass; electrochemistry; energy storage; redox chemistry; sustainability; tannic acid

资金

  1. German Research Foundation (DFG) [LI 2526/4-1]
  2. German Federal Ministry of Education and Research [BMBF] [13XP5050A]
  3. Fraunhofer-Max Planck cooperation project [Glyco3Display] the Max Planck Society
  4. Max Planck Institute of Colloids and Interfaces
  5. Projekt DEAL

向作者/读者索取更多资源

The study addresses the issue of sustainability in organic materials for next-generation Li-ion energy storage devices by synthesizing an organic cathode material from renewable resources. The material shows outstanding performance with low cost, ecofriendliness, high capacity, and low capacity fading.
The use of organic materials with reversible redox activity holds enormous potential for next-generation Li-ion energy storage devices. Yet, most candidates are not truly sustainable, i.e., not derived from renewable feedstock or made in benign reactions. Here an attempt is reported to resolve this issue by synthesizing an organic cathode material from tannic acid and microporous carbon derived from biomass. All constituents, including the redox-active material and conductive carbon additive, are made from renewable resources. Using a simple, sustainable fabrication method, a hybrid material is formed. The low cost and ecofriendly material shows outstanding performance with a capacity of 108 mAh g(-1) at 0.1 A g(-1) and low capacity fading, retaining approximately 80% of the maximum capacity after 90 cycles. With approximately 3.4 V versus Li+/Li, the cells also feature one of the highest reversible redox potentials reported for biomolecular cathodes. Finally, the quinone-catecholate redox mechanism responsible for the high capacity of tannic acid is confirmed by electrochemical characterization of a model compound similar to tannic acid but without catecholic groups.

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