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Sustainable Grease Lubrication Induced by Graphene Oxide and LiFePO<sub>4</sub>
Indexado
WoS WOS:001344359400001
DOI 10.1002/ADEM.202401762
Año 2024
Tipo artículo de investigación

Citas Totales

Autores Afiliación Chile

Instituciones Chile

% Participación
Internacional

Autores
Afiliación Extranjera

Instituciones
Extranjeras


Abstract



This study investigates the possibility of modifying lubricating greases by 2D graphene oxide (GO) and lithium iron phosphate (LiFePO4) to enhance their tribological performance. GO's layered structure plays a crucial role in reducing friction by facilitating easy sliding between rubbing surfaces, making it an effective solid lubricant. The impact of these additives on friction reduction, wear resistance, and the tribolayer formation ability is evaluated by ball-on-disc tribometry with an emphasis on durability and sustainability. Comparative results reveal that unmodified greases exhibit a high susceptibility to wear, including oxide formation and severe plastic deformation. In contrast, greases with GO show a notable reduction in friction, while the addition of LiFePO4 contributes to the formation of a continuous protective layer that substantially reduces abrasive wear. The combination of GO and LiFePO4 results in a homogeneous, durable tribofilm that effectively protects surfaces against severe wear providing long-term friction stability. Although lab-scale LiFePO4 is used, the findings suggest a great potential for extending the useful life of recycled LiFePO4 from lithium-ion batteries, similar to commercial LiFePO4 thus confirming significant improvements in the grease performance but also highlighting the potential to advance toward more sustainable solutions in industrial applications and electric vehicles.

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Disciplinas de Investigación



WOS
Materials Science, Multidisciplinary
Scopus
Sin Disciplinas
SciELO
Sin Disciplinas

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Publicaciones WoS (Ediciones: ISSHP, ISTP, AHCI, SSCI, SCI), Scopus, SciELO Chile.

Colaboración Institucional



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Autores - Afiliación



Ord. Autor Género Institución - País
1 Zambrano, Dario Hombre Universidad de Chile - Chile
2 Gonzalez, Jessica Gutierrez - UNIV MAR DEL PLATA - Argentina
Natl Res Council CONICET - Argentina
3 Castillo, Cristian - MinnoX Technol SpA - Chile
4 Henriquez, Javier Marques - Universidad de Chile - Chile
5 Parra-Munoz, Nicole - Comision Chilena de Energia Nuclear - Chile
6 Urzua, Julio I. - Comision Chilena de Energia Nuclear - Chile
7 Rosenkranz, Andreas Hombre Universidad de Chile - Chile
Millennium Nuclei Adv MXenes Sustainable Applicat - Chile

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Financiamiento



Fuente
University of Mar del Plata
ANID-Chile
Millennium Science Initiative Program
ANID Postdoctoral Fondecyt
National Research Council (CONICET, Argentina)
National Agency for the Promotion of Science and Technology (ANPCyT, Argentina)

Muestra la fuente de financiamiento declarada en la publicación.

Agradecimientos



Agradecimiento
D.Z. acknowledges the financial support funded by ANID postdoctoral FONDECYT (3220165). A.R. gratefully acknowledges the financial support of ANID-Chile within the projects Fondecyt Regular 1220331 and Fondequip EQM190057 as well as and the Millennium Science Initiative Program (NCN2023_007). J.G. gratefully acknowledged the financial support of the following institutions: the National Research Council (CONICET, Argentina), the National Agency for the Promotion of Science and Technology (ANPCyT, Argentina), and the University of Mar del Plata. J.I.U. gratefully acknowledges the financial support of ANID-Chile within the project Fondecyt Iniciacion 11220420.

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