Self-diffusion in liquid interfaces

Herth S, Ye F, Eggersmann M, Gutfleisch O, Wurschum R (2004)
Physical Review Letters 92(9).

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Abstract
For studying self-diffusion in liquid interfaces, Fe-59 tracer diffusion was measured on ultrafine-grained Nd2Fe14B which undergoes an intergranular melting transition for low Nd excess. The diffusion coefficient in the intergranular liquid layers is found to be lower than in bulk melts indicating a hampered atomic mobility due to confinement. Well above the intergranular melting transition, the diffusivity in the liquid interfaces approaches a value characteristic for bulk melts.
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Herth S, Ye F, Eggersmann M, Gutfleisch O, Wurschum R. Self-diffusion in liquid interfaces. Physical Review Letters. 2004;92(9).
Herth, S., Ye, F., Eggersmann, M., Gutfleisch, O., & Wurschum, R. (2004). Self-diffusion in liquid interfaces. Physical Review Letters, 92(9).
Herth, S., Ye, F., Eggersmann, M., Gutfleisch, O., and Wurschum, R. (2004). Self-diffusion in liquid interfaces. Physical Review Letters 92.
Herth, S., et al., 2004. Self-diffusion in liquid interfaces. Physical Review Letters, 92(9).
S. Herth, et al., “Self-diffusion in liquid interfaces”, Physical Review Letters, vol. 92, 2004.
Herth, S., Ye, F., Eggersmann, M., Gutfleisch, O., Wurschum, R.: Self-diffusion in liquid interfaces. Physical Review Letters. 92, (2004).
Herth, Simone, Ye, F, Eggersmann, M, Gutfleisch, O, and Wurschum, R. “Self-diffusion in liquid interfaces”. Physical Review Letters 92.9 (2004).
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