Title of article :
Hydrogen microscopy – Distribution of hydrogen in buckled niobium hydrogen thin films
Author/Authors :
Wagner، نويسنده , , Stefan and Moser، نويسنده , , Marcus and Greubel، نويسنده , , Christoph and Peeper، نويسنده , , Katrin and Reichart، نويسنده , , Patrick and Pundt، نويسنده , , Astrid and Dollinger، نويسنده , , Günther، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Abstract :
Hydrogen absorption in thin metal films clamped to rigid substrates results in mechanical stress that changes the hydrogenʹs chemical potential by ΔμH(σ) = −1.124σ kJ/molH for σ measured in [GPa]. In this paper we show that local stress relaxation by the detachment of niobium hydrogen thin films from the substrate affects the chemical potential on the local scale: using coincident proton–proton scattering at a proton microprobe, the hydrogen concentration is determined with μm resolution, revealing that hydrogen is not homogenously distributed in the film. The local hydrogen solubility of the film changes with its local stress state, mapping the buckled film fraction. In niobium hydrogen thin films loaded up to nominal concentrations in the two-phase coexistence region, the clamped film fraction remains in the solid solution phase, while the buckles represent the hydride phase. These results are compared to a simple model taking the stress impact on the chemical potential into account.
Keywords :
Thin films , Proton–proton scattering , Hydrogen microscopy , Hydrogen distribution , stress relaxation
Journal title :
International Journal of Hydrogen Energy
Journal title :
International Journal of Hydrogen Energy