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Sheet‐Size‐Dependent Mosaicity of 2D Phyllosilicate Membranes

Source: PubMed Central Open Access, NCBI / U.S. National Library of Medicine

Advanced ScienceLast synced 8/2/2026Status: syncedPMID: 42537044 pmidDOI: 10.1002/advs.76913

ABSTRACT Two‐dimensional (2D) materials are physical building blocks of laminar membranes with interlayer channels for ion and molecular transport. Here, we systematically investigate the influence of lateral sheet size on the ion permeability and structural organization of vermiculite membranes. We show that the sheet size plays a significant role in governing the microstructure of these laminar systems. High resolution x‐ray diffraction analysis reveals changes in mosaic distribution and vertical domain size depending upon exfoliate lateral size, leading to changes in the degree of polycrystallinity of the membrane. As these structural variations influence ion transport processes through the membrane, we highlight the need of careful size control of exfoliated 2D materials and structural disorder analysis for 2D laminar membrane development. This study explores how the size of 2D vermiculite sheets affects the structure of laminar membranes. High‐resolution x‐ray diffraction reveals how sheet size governs structural disorder and crystallinity. These changes directly impact ion permeability. The results emphasize the importance of polycrystalline structural analysis and sheet size control when designing 2D laminar membranes. advs76913-abs-0001 graphical

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