研究目的
Introducing a laser-based concept for the generation of metallic hierarchical porous materials (HPMs) and demonstrating its general applicability on various metals.
研究成果
The introduced laser-based concept enables convenient access to a variety of metallic hierarchical porous materials with highly tunable properties, promising potential for a variety of technical applications.
研究不足
The study focuses on metallic materials and does not explore the applicability of the method to non-metallic materials. The resolution of FIB-SEM tomography may not capture all meso- and micropores in the hierarchically structured cauliflowers.
1:Experimental Design and Method Selection
The study uses a nanosecond pulsed laser to ablate and recondense metals in ambient air, creating hierarchical porous materials. The process involves laser-induced metal ablation and instantaneous recondensation of partially oxidized metals.
2:Sample Selection and Data Sources
Metals with pronounced differences in their melting and evaporation temperatures (Sn, Cu, Si, Ti, and W) were selected to demonstrate the general applicability of the method.
3:List of Experimental Equipment and Materials
Nanosecond pulsed laser (Spectra Physics Explorer XP 5-532), SEM (JSM-7500F), X-ray powder diffractometer (X’pert PRO MPD), FIB-SEM system (Strata 400S).
4:Experimental Procedures and Operational Workflow
Laser treatments were carried out in ambient air with specific parameters (average laser power of 4.5 W, pulse frequency of 50 kHz, pulse energy of 90 μJ, pulse width of 6 ns). The laser beam was focused and scanned over the sample surfaces in a meandering pattern.
5:Data Analysis Methods
The 3D morphology of the superstructures was analyzed using tomographic data obtained by FIB-SEM. Fractal dimension was determined using the box-counting method.
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JSM-7500F
JSM-7500F
Jeol
Field emission microscope for SEM
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Strata 400S
Strata 400S
FEI/ThermoFisher Scientific
Dual-beam FIB-SEM system for tomographic data
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Spectra Physics Explorer XP 5-532
Explorer XP 5-532
Newport
Nanosecond pulsed laser for laser treatments
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X’pert PRO MPD
X’pert PRO MPD
Philips
X-ray powder diffractometer for crystal structure analysis
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