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All data and materials are fully available without restriction.
Surfaces of the wooden materials are fully leveled and polished to produce a smooth surface.
Furthermore, such materials are fully traceable in cells by multiphoton fluorescence lifetime imaging with near-infrared excitation (910 nm).
Both delamination of the adhesive interface is followed and crack patterns within the materials are fully determined.
In particular, the obtained materials are fully hydrated, which allows performing time-consuming testing (such as e.g. creep and drying-shrinkage tests) on microstructures equivalent to low degrees of hydration, which would not be possible on the hydrating material counterparts.
However, there are still many open questions that need to be answered before it would be possible to claim that design principles of catalyst materials are fully developed for the efficient hydrogen production.
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The materials were fully characterized by their conduction matrices, which vary with the position of different materials.
The formed PA6 matrix materials were fully characterized in terms of their viscosimetric properties and molar masses.
The final materials were fully characterized via NMR, IR, elemental analysis, GPC, DSC and X-ray diffraction.
The materials were fully characterized by means of XRD, UV vis, elemental analysis, N2 sorption measurements and HR-TEM.
The resulting metal-modified materials were fully characterized using X-ray powder diffraction, N2 adsorption/desorption isotherms gathered at −196 °C, SEM/EDX, FT-IR, and TGA.
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