New insight into nanoparticle precipitation by electron beams in borosilicate glasses

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Abstract

Nanoprecipitation in different oxide glasses by means of electron irradiation in transmission electron microscopy (TEM) has been compared in this study. Upon irradiation, groups or patterns of nanoparticles with various morphologies and sizes were formed in borosilicate glasses, loaded with zinc, copper, and silver. The study successfully includes loading ranges for the target metal from doping level (1%) over medium level (20%) to majority phase (60%). It is found that particle patterning resolution is affected by parallel processes of amorphous phase separation, glass ablation, and delocalised precipitation. In addition, via an in-situ study, it is confirmed that by heating alone without irradiation, no precipitate nanoparticles form.

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Sabri, M. M., & Möbus, G. (2017). New insight into nanoparticle precipitation by electron beams in borosilicate glasses. Applied Physics A: Materials Science and Processing, 123(6). https://doi.org/10.1007/s00339-017-1064-5

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