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Shellfish biowaste-derived carbon architectures as renewably sourced cathode materials for Lithium–Sulfur batteries

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posted on 2025-06-18, 07:57 authored by Deaglan BowmanDeaglan Bowman, Ana T.S.C. Brandao, Sabrina State, Renata Costa, Marius Enachescu, Laura-Bianca Enache, Carlos M. Pereira, David Mc NultyDavid Mc Nulty

With the rapidly increasing demand for sustainable battery systems comes the need for environmentally friendly, cost-effective, and scalable material production. The reutilisation of biomass waste as precursors for carbonaceous materials shows promise in tackling some of these issues, especially when considered as sulfur hosts for lithium–sulfur (Li–S) batteries. In this work, amorphous, porous carbon particles are produced through the facile carbonisation of glycogen derived from the industrial wastewater stream of the mussel cooking process. The influence of carbonisation time on the structural and molecular properties of the carbon particles is investigated using gas absorption analysis, Raman spectroscopy, X-ray diffraction, scanning electron microscopy, scanning transmission electron microscopy, and attenuated total reflectance Fourier transform infrared spectroscopy. The application of these shellfish waste glycogen-derived carbons as sulfur host materials for Li–S batteries is detailed for the first time, including galvanostatic cycling and cyclic voltammetry. Specific charge values obtained in this study are greater than many reported values for carbons prepared from other biomass sources including rice husks and peanut shells. This work highlights the possibility to derive low-cost, sustainable sulfur host materials with promising electrochemical performance from shellfish materials which are currently considered to be waste products.

Funding

ALTERNATE: Advanced Lithium–Sulfur Batteries as a Beyond Lithium-Ion Energy Storage Technology

Science Foundation Ireland

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Pilot Integration of 3nm Semiconducter technology

European Commission

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IC Technology for the 2nm Node

European Commission

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History

Publication

Journal of Power Sources 649, 237406

Publisher

Elsevier

Other Funding information

Research Grant UIDB/00081/2020–CIQUP, LA/P/0056/2020 (IMS) H2Innovate NORTE-01-0145-FEDER-000076. H2020 Projects: PIn3S - 10/1.1.3H/April 03, 2020, POC-SMIS code 135127, BEYOND5 12/1.1.3/July 31, 2020, POC-SMIS code 136877 and IT2 – Contract. no. 11/1.1.3H/July 06, 2020, POC-SMIS code 136697 DL 57/2016–Norma transitoria ´ (SFRH/BPD/89752/2012)

Also affiliated with

  • Bernal Institute

Department or School

  • Chemical Sciences
  • Physics

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