Morphology-tuned wurtzite-type ZnS nanobelts

作者:Wang ZW*; Daemen LL; Zhao YS; Zha CS; Downs RT; Wang XD; Wang ZL; Hemley RJ
来源:Nature Materials, 2005, 4(12): 922-927.
DOI:10.1038/nmat1522

摘要

Nanometre-sized inorganic dots, wires and belts have a wide range of electrical and optical properties, and variable mechanical stability and phase-transition mechanisms that show a sensitive dependency on size, shape and structure. The optical properties of the semiconductor ZnS in wurtzite structures are considerably enhanced, but the lack of structural stability limits technological applications. Here, we demonstrate that morphology-tuned wurtzite ZnS nanobelts show a particular low-energy surface structure dominated by the +/-{2(1) over bar 0} surface facets. Experiments and calculations show that the morphology of ZnS nanobelts leads to a very high mechanical stability to similar to 6.8 GPa, and also results in an explosive mechanism for the wurtzite-to-sphalerite phase transformation together with in situ fracture of the nanobelts. ZnS wurtzite nanobelts provide a model that is useful not only for understanding the morphology-tuned stability and transformation mechanism, but also for improving synthesis of metastable nanobelts with quantum effects for electronic and optical devices.

  • 出版日期2005-12