| Literature DB >> 22221520 |
Kwan-Hyuck Yoon1, Kyu-Seok Han, Myung-Mo Sung.
Abstract
We fabricated a new organic-inorganic hybrid superlattice film using molecular layer deposition [MLD] combined with atomic layer deposition [ALD]. In the molecular layer deposition process, polydiacetylene [PDA] layers were grown by repeated sequential adsorption of titanium tetrachloride and 2,4-hexadiyne-1,6-diol with ultraviolet polymerization under a substrate temperature of 100°C. Titanium oxide [TiO2] inorganic layers were deposited at the same temperatures with alternating surface-saturating reactions of titanium tetrachloride and water. Ellipsometry analysis showed a self-limiting surface reaction process and linear growth of the nanohybrid films. The transmission electron microscopy analysis of the titanium oxide cross-linked polydiacetylene [TiOPDA]-TiO2 thin films confirmed the MLD growth rate and showed that the films are amorphous superlattices. Composition and polymerization of the films were confirmed by infrared spectroscopy. The TiOPDA-TiO2 nanohybrid superlattice films exhibited good thermal and mechanical stabilities.PACS: 81.07.Pr, organic-inorganic hybrid nanostructures; 82.35.-x, polymerization; 81.15.-z, film deposition; 81.15.Gh, chemical vapor deposition (including plasma enhanced CVD, MOCVD, ALD, etc.).Entities:
Year: 2012 PMID: 22221520 PMCID: PMC3269353 DOI: 10.1186/1556-276X-7-71
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1Schematic outline. Schematic outline of the procedure to fabricate TiOPDA films using molecular layer deposition.
Figure 2Self-terminating growth graphs. (a) Growth rate of TiO2 as a function of TiCl4 dosing time. (b) Growth rate of TiO2 as a function of H2O dosing time. (c) Growth rate of TiOPDA as a function of TiCl4 dosing time. (d) Growth rate of TiOPDA as a function of HDD dosing time.
Figure 3Analysis data of TiOPDA films. (a) FTIR spectra for the TiOPDA polymer and diacetylene films. (b) UV-Vis spectra for the TiOPDA polymer and diacetylene films. (c) XP survey and high resolution spectra for the TiOPDA polymer film.
Figure 4TEM images. TEM image of a typical TiOPDA-TiO2 nanohybrid thin film.