Advances in Graphene Oxide-Based Composites and Membranes: Structural Engineering, Multifunctional Performance, and Emerging Applications
Апстракт
Graphene oxide (GO), with its high surface area, tunable chemistry, and exceptional mechanical, thermal, and electrical properties, is rapidly advancing as a transformative material in both composite engineering and membrane technology. In composite systems, GO serves as a multifunctional reinforcement, significantly improving strength, stiffness, thermal stability, and conductivity when integrated into polymeric, ceramic, or metallic matrices. These enhancements are enabling high-performance solutions across electronics, aerospace, automotive, and construction sectors, where lightweight yet durable materials are in demand. In addition, GO-based membranes are revolutionizing water purification, desalination, and other high-end separation technologies. The layered structure, adjustable interlayer spacing, and abundant oxygen-containing functional groups of GO allow precise control over permeability and selectivity, enabling efficient transport of desired molecules while blocking contami...nants. Tailoring GO morphology and surface chemistry offers a pathway to optimized membrane performance for both industrial and environmental applications. This paper gives a comprehensive overview of the latest developments in GO-based composites and membranes, highlighting the interplay between structure, morphology, and functionality. Future research directions toward scalable fabrication, performance optimization, and integration into sustainable technologies are discussed, underscoring GO’s pivotal role in shaping next-generation advanced materials.
Кључне речи:
gas separation / GO composites / graphene oxide / membrane technology / water desalination / water purificationИзвор:
Processes, 2026, 14, 1, 13-Финансирање / пројекти:
- Министарство науке, технолошког развоја и иновација Републике Србије, институционално финансирање - 200017 (Универзитет у Београду, Институт за нуклеарне науке Винча, Београд-Винча) (RS-MESTD-inst-2020-200017)
Колекције
Институција/група
VinčaTY - JOUR AU - Kleut, Duška AU - Prekodravac Filipović, Jovana PY - 2026 UR - https://vinar.vin.bg.ac.rs/handle/123456789/16087 AB - Graphene oxide (GO), with its high surface area, tunable chemistry, and exceptional mechanical, thermal, and electrical properties, is rapidly advancing as a transformative material in both composite engineering and membrane technology. In composite systems, GO serves as a multifunctional reinforcement, significantly improving strength, stiffness, thermal stability, and conductivity when integrated into polymeric, ceramic, or metallic matrices. These enhancements are enabling high-performance solutions across electronics, aerospace, automotive, and construction sectors, where lightweight yet durable materials are in demand. In addition, GO-based membranes are revolutionizing water purification, desalination, and other high-end separation technologies. The layered structure, adjustable interlayer spacing, and abundant oxygen-containing functional groups of GO allow precise control over permeability and selectivity, enabling efficient transport of desired molecules while blocking contaminants. Tailoring GO morphology and surface chemistry offers a pathway to optimized membrane performance for both industrial and environmental applications. This paper gives a comprehensive overview of the latest developments in GO-based composites and membranes, highlighting the interplay between structure, morphology, and functionality. Future research directions toward scalable fabrication, performance optimization, and integration into sustainable technologies are discussed, underscoring GO’s pivotal role in shaping next-generation advanced materials. T2 - Processes T1 - Advances in Graphene Oxide-Based Composites and Membranes: Structural Engineering, Multifunctional Performance, and Emerging Applications VL - 14 IS - 1 SP - 13 DO - 10.3390/pr14010013 ER -
@article{
author = "Kleut, Duška and Prekodravac Filipović, Jovana",
year = "2026",
abstract = "Graphene oxide (GO), with its high surface area, tunable chemistry, and exceptional mechanical, thermal, and electrical properties, is rapidly advancing as a transformative material in both composite engineering and membrane technology. In composite systems, GO serves as a multifunctional reinforcement, significantly improving strength, stiffness, thermal stability, and conductivity when integrated into polymeric, ceramic, or metallic matrices. These enhancements are enabling high-performance solutions across electronics, aerospace, automotive, and construction sectors, where lightweight yet durable materials are in demand. In addition, GO-based membranes are revolutionizing water purification, desalination, and other high-end separation technologies. The layered structure, adjustable interlayer spacing, and abundant oxygen-containing functional groups of GO allow precise control over permeability and selectivity, enabling efficient transport of desired molecules while blocking contaminants. Tailoring GO morphology and surface chemistry offers a pathway to optimized membrane performance for both industrial and environmental applications. This paper gives a comprehensive overview of the latest developments in GO-based composites and membranes, highlighting the interplay between structure, morphology, and functionality. Future research directions toward scalable fabrication, performance optimization, and integration into sustainable technologies are discussed, underscoring GO’s pivotal role in shaping next-generation advanced materials.",
journal = "Processes",
title = "Advances in Graphene Oxide-Based Composites and Membranes: Structural Engineering, Multifunctional Performance, and Emerging Applications",
volume = "14",
number = "1",
pages = "13",
doi = "10.3390/pr14010013"
}
Kleut, D.,& Prekodravac Filipović, J.. (2026). Advances in Graphene Oxide-Based Composites and Membranes: Structural Engineering, Multifunctional Performance, and Emerging Applications. in Processes, 14(1), 13. https://doi.org/10.3390/pr14010013
Kleut D, Prekodravac Filipović J. Advances in Graphene Oxide-Based Composites and Membranes: Structural Engineering, Multifunctional Performance, and Emerging Applications. in Processes. 2026;14(1):13. doi:10.3390/pr14010013 .
Kleut, Duška, Prekodravac Filipović, Jovana, "Advances in Graphene Oxide-Based Composites and Membranes: Structural Engineering, Multifunctional Performance, and Emerging Applications" in Processes, 14, no. 1 (2026):13, https://doi.org/10.3390/pr14010013 . .



