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SANLIANG LING's Outputs (6)

Violations of Löwenstein's rule in zeolites (2017)
Journal Article
Fletcher, R. E., Ling, S., & Slater, B. (2017). Violations of Löwenstein's rule in zeolites. Chemical Science, 8(11), 7483-7491. https://doi.org/10.1039/c7sc02531a

Zeolites, microporous aluminosilicates, are amongst the most widely used catalysts in the petrochemical industry. Zeolite catalytic functionality is influenced by the location of tetrahedral alumina and associated counter-cations in the aluminosilica... Read More about Violations of Löwenstein's rule in zeolites.

Phonon-glass electron-crystal behaviour by A site disorder in n-type thermoelectric oxides (2017)
Journal Article
Daniels, L. M., Savvin, S. N., Pitcher, M. J., Dyer, M. S., Claridge, J. B., Ling, S., …Rosseinsky, M. J. (2017). Phonon-glass electron-crystal behaviour by A site disorder in n-type thermoelectric oxides. Energy and Environmental Science, 10(9), 1917-1922. https://doi.org/10.1039/c7ee01510k

© 2017 The Royal Society of Chemistry. Phonon-glass electron-crystal (PGEC) behaviour is realised in La0.5Na0.5Ti1-xNbxO3 thermoelectric oxides. The vibrational disorder imposed by the presence of both La3+ and Na+ cations on the A site of the ABO3 p... Read More about Phonon-glass electron-crystal behaviour by A site disorder in n-type thermoelectric oxides.

Is high-density amorphous ice simply a “derailed” state along the ice I to ice IV pathway? (2017)
Journal Article
Shephard, J. J., Ling, S., Sosso, G. C., Michaelides, A., Slater, B., & Salzmann, C. G. (2017). Is high-density amorphous ice simply a “derailed” state along the ice I to ice IV pathway?. Journal of Physical Chemistry Letters, 8(7), 1645-1650. https://doi.org/10.1021/acs.jpclett.7b00492

The structural nature of high-density amorphous ice (HDA), which forms through low-temperature pressure-induced amorphization of the “ordinary” ice I, is heavily debated. Clarifying this question is important for understanding not only the complex co... Read More about Is high-density amorphous ice simply a “derailed” state along the ice I to ice IV pathway?.