Beyond the bilayer: multilayered hygroscopic actuation in pine cone scales

Kim Ulrich, Max David Mylo, Tom Masselter, Fabian Scheckenbach, Sophia Fischerbauer, Martin Nopens, Silja Flenner, Imke Greving, Linnea Hesse and Thomas Speck
Beilstein J. Nanotechnol. 2025, 16, 1695–1710. https://doi.org/10.3762/bjnano.16.119

Supporting Information

Supporting Information File 1: Detailed parameter files for digital volume correlation. The ZIP archive contains two txt files, that is, “Affine_parameters.txt”, the parameter file for affine registration, and “BSpline_parameters.txt”, the parameter file for B-spline registration.
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Supporting Information File 2: Additional experimental data.
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Supporting Information File 3: Bending simulation result of the bilayer model.
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Supporting Information File 4: Bending simulation result of the trilayer model.
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Supporting Information File 5: Bending simulation result of the fiber model.
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Supporting Information File 6: Bending simulation result of the fiber model with a gradient.
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Supporting Information File 7: Bending simulation result of the scale-like model.
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Supporting Information File 8: Bending simulation result of the bilayer model with reduced E-modulus.
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Supporting Information File 9: Bending simulation result of the scale-like model with reduced E-modulus.
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Cite the Following Article

Beyond the bilayer: multilayered hygroscopic actuation in pine cone scales
Kim Ulrich, Max David Mylo, Tom Masselter, Fabian Scheckenbach, Sophia Fischerbauer, Martin Nopens, Silja Flenner, Imke Greving, Linnea Hesse and Thomas Speck
Beilstein J. Nanotechnol. 2025, 16, 1695–1710. https://doi.org/10.3762/bjnano.16.119

How to Cite

Ulrich, K.; Mylo, M. D.; Masselter, T.; Scheckenbach, F.; Fischerbauer, S.; Nopens, M.; Flenner, S.; Greving, I.; Hesse, L.; Speck, T. Beilstein J. Nanotechnol. 2025, 16, 1695–1710. doi:10.3762/bjnano.16.119

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