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Aqueous, environment friendly precursor solutions were formulated for both materials.
The pertaining formation mechanisms for both materials are explored.
Lifetime-temperature maps for both materials are presented.
The compressive modulus obtained is on the same order of magnitude for both materials.
Of interest, the higher peak values remained unchanged for both materials.
Temperature-dependent thermal conductivities and internal heat generations are assumed for both materials.
The Young's moduli are calculated for both materials from the stress strain curves.
Also, the plastic energy dissipation behavior near cracks with different curvatures is discussed for both materials.
Polarisation curves indicate a limited range of passivity for both materials in neutral solution.
The electroactive area, calculated using the hydrogen desorption method, are the same for both materials.
Strong correlation between compressive stress and hardness was observed for both materials.
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