Exploring the electrochemistry of PTCDI for aqueous lithium-ion batteries
Artikel i vetenskaplig tidskrift, 2024

Aqueous lithium-ion batteries (ALIBs) hold promise of providing cost-effective and safe energy storage in the context of an increasingly environmentally aware narrative. Moreover, mitigating concerns surrounding the critical raw materials present in traditional LIBs reinforces the alignment with such ideals. Herein, we delve into the electrochemistry of perylene-3,4,9,10-tetracarboxylic acid diimide (PTCDI) and evaluate its potential as an organic anode active material for ALIBs. We find the all-organic anode to reversibly (de)intercalate Li+ with moderately concentrated aqueous electrolytes, although in a slightly different manner compared with organic solvents. Furthermore, the half-cell electrochemical performance in terms of capacity, capacity retention, rate performance, Coulombic efficiency, and self-discharge, is all indeed satisfactory, where proof-of-concept ALIBs using the high voltage lithium manganese oxide (LMO) exhibit >70 Wh kg−1(PTCDI+LMO) and an average voltage of ca. 1.5 V. These findings have the intention to further encourage organic redox-active material R&D with more dilute aqueous electrolytes, potentially paving the way towards a greener and more sustainable energy landscape.

Electrochemistry

Lithium-ion batteries

Sustainability

Aqueous electrolytes

Organic active materials

Författare

John Brown

Collège de France

Alistore - European Research Institute

FR CNRS 3459

Martin Karlsmo

Chalmers, Fysik, Materialfysik

Patrik Johansson

Chalmers, Fysik, Materialfysik

Alexis Grimaud

Boston College

FR CNRS 3459

Collège de France

Ezzoubair Bendadesse

Collège de France

FR CNRS 3459

Energy Storage Materials

2405-8297 (eISSN)

Vol. 66 103218

Nästa generations batterier

Vetenskapsrådet (VR) (2021-00613), 2021-12-01 -- 2032-12-31.

Uthålliga batteriteknologier via vattenbaserade elektrolyter och okonventionella elektroder och förpackningar

Formas (2018-01450), 2019-01-01 -- 2021-12-31.

Ämneskategorier

Materialkemi

Infrastruktur

Chalmers materialanalyslaboratorium

DOI

10.1016/j.ensm.2024.103218

Mer information

Senast uppdaterat

2024-02-16