4.8 Article

Unusually stable ∼100-fold reversible and instantaneous swelling of inorganic layered materials

Journal

NATURE COMMUNICATIONS
Volume 4, Issue -, Pages -

Publisher

NATURE RESEARCH
DOI: 10.1038/ncomms2641

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Funding

  1. World Premier International Center Initiative on Materials Nanoarchitectonics, MEXT, Japan
  2. Grants-in-Aid for Scientific Research [24104005, 23340089] Funding Source: KAKEN

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Cells can swell or shrink in certain solutions; however, no equivalent activity has been observed in inorganic materials. Although lamellar materials exhibit increased volume with increase in the lamellar period, the interlamellar expansion is usually limited to a few nanometres, with a simultaneous partial or complete exfoliation into individual atomic layers. Here we demonstrate a large monolithic crystalline swelling of layered materials. The gallery spacing can be instantly increased similar to 100-fold in one direction to similar to 90 nm, with the neighbouring layers separated primarily by H2O. The layers remain strongly held without peeling or translational shifts, maintaining a nearly perfect three-dimensional lattice structure of >3,000 layers. First-principle calculations yield a long-range directional structuring of the H2O molecules that may help to stabilize the highly swollen structure. The crystals can also instantaneously shrink back to their original sizes. These findings provide a benchmark for understanding the exfoliating layered materials.

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