Electrochemical Energy Reviews ›› 2024, Vol. 7 ›› Issue (1): 1-.doi: 10.1007/s41918-023-00197-3

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PGM-Free Biomass-Derived Electrocatalysts for Oxygen Reduction in Energy Conversion Devices: Promising Materials

Stefano Zago1, Laura C. Scarpetta Pizo2, José H. Zagal2, Linlin Li2, Stefania Specchia1   

  1. 1. Department of Applied Science and Technology, Politecnico di Torino, Corso Duca Degli Abruzzi 24, 10129 Turin, Italy;
    2. Departamento de Química de los Materiales, Laboratorio de Electrocatálisis y Electrónica Molecular, Universidad de Santiago de Chile, Ada. Bernardo O'higgins 3363, 9170022 Santiago, Chile
  • Received:2022-10-22 Revised:2023-05-15 Published:2024-04-03
  • Contact: José H. Zagal,E-mail:jose.zagal@usach.cl;Stefania Specchia,E-mail:stefania.specchia@polito.it E-mail:jose.zagal@usach.cl;stefania.specchia@polito.it
  • Supported by:
    LCS-P acknowledges the ANID Conicyt Doctoral Scholarship No. 21212199 and University of Santiago de Chile. JHZ acknowledges the funding of Fondecyt Grants Nos. 1181260 and 1221798, and Conicyt/ANID PIA Proyect ACT 192175. SS acknowledges the Fondecyt Grant No. 1181037 for funding her visit to University of Santiago de Chile in 2022. SS thanks Prof. Ashwani K. Gupta from University of Maryland (College Park, CT, USA) for the fruitful discussion.

Abstract: Biomass is a low-cost, abundant and renewable resource that can be used to manufacture porous carbon-based materials for a variety of applications. Different mesoporous carbon supports can be obtained from the various synthetic approaches that are aimed at increasing the specific surface area and functionalization. Currently, most of the biomass is used for energy recovery. The circular economy approach could lead to the development of cheap and sustainable materials, and turning of wastes into a precious resource. In this review, we provide the recent advances in the field of electrochemistry for porous carbon materials derived from biomass, which offers wider applications in proton exchange membrane fuel cells (PEMFCs), anion exchange membrane fuel cells (AEMFCs) and Zn-air batteries (ZABs). The focus is on understanding the required properties of the materials and the role of synthetic pathways in platinum group metal (PGM) free electrocatalysts. The most promising materials are evaluated towards the oxygen reduction reaction (ORR) in PEMFC, AEMFC, and ZAB. The results achieved showed that the expected performances on these energy conversion devices still lack for deployment in practice, especially if compared with commercially available PGM-free electrocatalysts. This review article provides insights on how to improve the actual electrocatalytic activity of biomass-derived materials.

Key words: Mesoporous carbons, Fe-N-C electrocatalysts, Oxygen reduction reaction, Proton exchange membrane fuel cells, Anion exchange membrane fuel cells, Zinc-air batteries, Circular economy