» Articles » PMID: 24569515

Probing of 2 Dimensional Confinement-induced Structural Transitions in Amorphous Oxide Thin Film

Overview
Journal Sci Rep
Specialty Science
Date 2014 Feb 27
PMID 24569515
Citations 5
Authors
Affiliations
Soon will be listed here.
Abstract

Whereas the atomic structure of surface of crystals is known to be distinct from that of bulk, experimental evidence for thickness-induced structural transitions in amorphous oxides is lacking. We report the NMR result for amorphous alumina with varying thickness from bulk up to 5 nm, revealing the nature of structural transitions near amorphous oxide surfaces/interfaces. The coordination environments in the confined amorphous alumina thin film are distinct from those of bulk, highlighted by a decrease in the fractions of high-energy clusters (and thus the degree of disorder) with thickness. The result implies that a wide range of variations in amorphous structures may be identified by controlling its dimensionality.

Citing Articles

The role of pentacoordinate Al sites of Pt/AlO catalysts in propane dehydrogenation.

Wang Y, Pei C, Wang X, Sun G, Zhao Z, Gong J Fundam Res. 2024; 4(6):1480-1487.

PMID: 39734525 PMC: 11670724. DOI: 10.1016/j.fmre.2022.08.020.


2D amorphous solids for sub-nanometer scale devices.

Jang H, Kim H, Kim G, Cho S, Yang H Nano Converg. 2024; 11(1):46.

PMID: 39581934 PMC: 11586329. DOI: 10.1186/s40580-024-00453-2.


Modelling amorphous materials a joint solid-state NMR and X-ray absorption spectroscopy and DFT approach: application to alumina.

Harper A, Emge S, Magusin P, Grey C, Morris A Chem Sci. 2023; 14(5):1155-1167.

PMID: 36756318 PMC: 9891381. DOI: 10.1039/d2sc04035b.


Structural insight into an atomic layer deposition (ALD) grown AlO layer on Ni/SiO: impact on catalytic activity and stability in dry reforming of methane.

Kim S, Armutlulu A, Liao W, Hosseini D, Stoian D, Chen Z Catal Sci Technol. 2021; 11(23):7563-7577.

PMID: 34912540 PMC: 8630620. DOI: 10.1039/d1cy01149a.


Atomic structure and oxygen deficiency of the ultrathin aluminium oxide barrier in Al/AlOx/Al Josephson junctions.

Zeng L, Tran D, Tai C, Svensson G, Olsson E Sci Rep. 2016; 6:29679.

PMID: 27403611 PMC: 4940733. DOI: 10.1038/srep29679.

References
1.
Lee S . Effect of pressure on structure of oxide glasses at high pressure: Insights from solid-state NMR of quadrupolar nuclides. Solid State Nucl Magn Reson. 2010; 38(2-3):45-57. DOI: 10.1016/j.ssnmr.2010.10.002. View

2.
Scopigno T, Steurer W, Yannopoulos S, Chrissanthopoulos A, Krisch M, Ruocco G . Vibrational dynamics and surface structure of amorphous selenium. Nat Commun. 2011; 2:195. DOI: 10.1038/ncomms1197. View

3.
Kresse G, Schmid M, Napetschnig E, Shishkin M, Kohler L, Varga P . Structure of the ultrathin aluminum oxide film on NiAl(110). Science. 2005; 308(5727):1440-2. DOI: 10.1126/science.1107783. View

4.
Sun Y, Zhu L, Kearns K, Ediger M, Yu L . Glasses crystallize rapidly at free surfaces by growing crystals upward. Proc Natl Acad Sci U S A. 2011; 108(15):5990-5. PMC: 3076810. DOI: 10.1073/pnas.1017995108. View

5.
Stierle A, Renner F, Streitel R, Dosch H, Drube W, Cowie B . X-ray diffraction study of the ultrathin Al2O3 layer on NiAl110. Science. 2004; 303(5664):1652-6. DOI: 10.1126/science.1094060. View