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Type
Energy and Soft Materials and the Development of Cryogenic Techniques for Studying Them
Vázquez-Vázquez, C., López-Quintela, M. A., Buján-Núñez, M. C., and Rivas, J., 13, (2010) pp. 1663–1676.Google Scholar
[2]
Chandramohan, P., Srinivasan, M., Velmurugan, S., and Narasimhan, S., Journal of Solid State Chemistry, 184, (2011) pp. 89–96.10.1016/j.jssc.2010.10.019CrossRefGoogle Scholar
[3]
Jansen, N., Yuzon, J., McCardle-Blunk, E., Barnes, J., Gotforth, A., Jiao, J., Microscopy and Microanalysis, (2019)Google Scholar
[4]
Xiao, S. H., Jiang, W. F., Li, L. Y., and Li, X. J., Materials Chemistry and Physics, 106, (2007) pp. 82–87.10.1016/j.matchemphys.2007.05.021CrossRefGoogle Scholar
[5]
Ding, Z., Wang, W., Zhang, Y., Li, F., and Liu, J.. Journal of Alloys and Compounds, 640, (2015) pp. 362–370.10.1016/j.jallcom.2015.04.020CrossRefGoogle Scholar
[6]
Naik, S., Salker, A., Yusuf, S., and Meena, S., Journal of Alloys and Compounds, 566, (2013) pp. 54–61.10.1016/j.jallcom.2013.02.163CrossRefGoogle Scholar
[7]
The research efforts for this study is supported in part by NSF awards #1851851 and #1560383, and Oregon Metal Initiative.Google Scholar