Method of controlling shape of synthesized ferroelectric oxide nanocrystal particles
Shape controlled synthesis of ferroelectric nanocrystals such as barium titanate (BaTiO 3 ) nanocrystals is described. By tuning the molar ratio between the surfactant and the metal precursors, BaTiO 3 nanocrystals with different shapes are readily obtained. This provides the nanoscopic ferroelectric building blocks for the fabrication of various electronic devices, as well as for fundamental research in nanoscience and nanotechnology.
1. In the process of forming ferroelectric nanocrystals from thermal decomposition of metal oxide precursors in the presence of an organic surfactant acting as a coordinating ligand, seleceted from the group consisting of oleic acid, stearic acid, and other fatty acid derived surfactants in a non-coordinating organic solvent, the improvement comprising:
controlling the shape of the produced ferroelectric particles by selectively adjusting the molar ratio of organic surfactant stabilizer to metal oxide precursor.
2. The process of claim 1 wherein the ferroelectric oxide is selected from the group consisting of BaTiO 3 , Pb(Zr,Ti)O 3 and (Ba,Sr)—TiO 3 .
3. The Process of claim 2 wherein the ferroelectric oxide is BaTiO 3 .
4. The process of claim 1 wherein the metal alkoxide precursor is a barium metal alkoxide precursor.
5. The process of claim 4 wherein the alkoxide metal precursor is barium titanium ethyl hexano-isopropoxide.
6. The process of claim 1 wherein the mole ratio of organic surfactant stabilizer: metal alkoxide precursor is adjusted within the range of 6:1 to 16:1 to provide predominantly nanomarble shaped ferroelectric oxide particles.
7. The process of claim 1 wherein the mole ratio of organic surfactant stabilizer: metal alkoxide precursor is adjusted within the range of 16:1 to 32:1 to provide predominantly nanorod shaped particles.
8. The process of claim 1 wherein the mole ratio of organic surfactant stabilizer: metal alkoxide precursor is adjusted to 32:1 or greater to provide predominantly nanowire shaped particles.