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July 12, 2026MembranesOpen Access

From Atomic Channels to Deployable Membranes: A Design-Oriented Framework for Graphene Oxide Transport, Functionalization, and Scalability

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Authors

AAAwad AlzebairDADidem AYDINİGİlkay Hilal Gübbük

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Overview

Review synthesizes mechanisms and scalability of graphene oxide membranes, suggesting improvements for practical use.

Key Points

  • This review aims to create a comprehensive framework for understanding and improving graphene oxide membranes in terms of transport mechanisms and scalability.
  • Introduced a three-regime transport model incorporating various flow mechanisms.
  • Conducted a parity analysis comparing water permeance estimates using classical molecular dynamics and proposed corrections with tortuosity.
  • Developed a computational roadmap assessing critical quantum effects for different transport applications.
  • Established that molecular dynamics overestimates GO laminate water permeance by 3–8×, reduced to 1.5–2× with corrections.
  • Identified nuclear quantum effects as essential for proton transport, while unresolved for water permeance.
  • Proposed a 500-h hydraulic stability protocol to enhance cross-laboratory comparisons in membrane studies.

Cite This Study

Alzebair et al. (2026) studied this question.

synapsesocial.com/papers/6a5332484f7abc118adeddcchttps://doi.org/10.3390/membranes16070237
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