Water-driven structure transformation in nanoparticles at room temperature

Author:

Zhang Hengzhong,Gilbert Benjamin,Huang Feng,Banfield Jillian F.

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference34 articles.

1. McHale, J. M., Auroux, A., Perotta, A. J. & Navrotsky, A. Surface energies and thermodynamic phase stability on nanocrystalline aluminas. Science 277, 788–791 (1997)

2. Zhang, H. & Banfield, J. F. Thermodynamic analysis of phase stability of nanocrystalline titania. J. Mater. Chem 8, 2073–2076 (1998)

3. Huang, F., Zhang, H., Gilbert, B. & Banfield, J. F. Surface state controlled nanocrystalline ZnS structure transformation. Abstr. Pap. Am. Chem. Soc. 225, 431-Phys (2003)

4. Huang, F., Zhang, H., Gilbert, B. & Banfield, J. F. Reversible, surface-controlled structure transformation in nanoparticles induced by aggregation-disaggregation. Phys. Rev. Lett. (submitted)

5. Li, A. & Draine, B. T. Are silicon nanoparticles an interstellar dust component? Astrophys. J. 564, 803–812 (2002)

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