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Related papers: Epitaxial NaxCoO2 Thin Films via Molecular-Beam Ep…

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We have fabricated Na_xCoO_2 thin films via lateral diffusion of sodium into Co_3O_4 (111) epitaxial films (reactive solid-phase epitaxy: Ref. 4). The environment of thermal diffusion is key to the control of the sodium content in thin…

Strongly Correlated Electrons · Physics 2009-11-13 W. J. Chang , C. C. Hsieh , T. Y. Chung , S. Y. Hsu , K. H. Wu , T. M. Uen , J. -Y. Lin , J. J. Lin , C. H. Hsu , Y. K. Kuo , H. L. Liu , M. H. Hsu , Y. S. Gou , J. Y. Juang

The observation of superconductivity in the layered transition metal oxide NaxCoO2 y H2O (K. Takada et al., Nature 422, 53 (2003)) has caused a tremendous upsurge of scientific interest due to its similarities and its differences to the…

Superconductivity · Physics 2015-05-13 Y. Krockenberger , I. Fritsch , G. Christiani , H. -U. Habermeier , Li Yu , C. Bernhard , B. Keimer , L. Alff

Photocatalytic materials are pivotal for the implementation of disruptive clean energy applications such as conversion of H$_{2}$O and CO$_{2}$ into fuels and chemicals driven by solar energy. However, efficient and cost-effective materials…

Materials Science · Physics 2019-09-04 Zhao Liu , Joel Shenoy , Cesar Menéndez , Judy N. Hart , Charles C. Sorrell , Claudio Cazorla

We report the growth of ultrathin VO$_{2}$ films on rutile TiO$_{2}$ (001) substrates via reactive molecular-beam epitaxy. The films were formed by the cyclical deposition of amorphous vanadium and its subsequent oxidation and…

We have synthesized epitaxial Ba2IrO4 (BIO) thin-films on SrTiO3 (001) substrates by pulsed laser deposition and studied their electronic structure by dc-transport and optical spectroscopic experiments. We have observed that BIO thin-films…

Strongly Correlated Electrons · Physics 2014-04-08 J. Nichols , O. B. Korneta , J. Terzic , G. Cao , J. W. Brill , S. S. A. Seo

Compositionally complex solid solutions provide a unique route for engineering high-performance electrocatalysts, where the polyelemental surface composition can be seamlessly tuned to optimize activity, selectivity, and stability. However,…

The interface and electronic structure of thin (~20-74 nm) Co3O4(110) epitaxial films grown by oxygen-assisted molecular beam epitaxy on MgAl2O4(110) single crystal substrates have been investigated by means of real and reciprocal space…

We have studied structural and transport properties of epitaxial NaxCoO2 thin films on (0001) sapphire substrate prepared by topotaxially converting an epitaxial Co3O4 film to NaxCoO2 with annealing in Na vapor. The films are c axis…

Strongly Correlated Electrons · Physics 2015-06-25 A. Venimadhav , A. Soukiassian , D. A. Tenne , Qi Li , X. X. Xi , D. G. Schlom , R. Arroyave , Z. K. Liu , H. P. Sun , Xiaoqing Pan , Minhyea Lee , N. P. Ong

Using pulsed laser deposition and a unique fast quenching method, we have prepared SrCoOx epitaxial films on SiTiO3 substrates. As electrochemical oxidation increases the oxygen content from x = 2.75 to 3.0, the films tend to favor the…

Strongly Correlated Electrons · Physics 2013-05-06 F. J. Rueckert , Y. F. Nie , C. Abughayada , S. A. Sabok-Sayr , H. Mohottala , J. I. Budnick , W. A. Hines , B. Dabrowski , B. O. Wells

We investigate the initial growth modes and the role of interfacial electrostatic interactions of EuO epitaxy on MgO(001) by reactive molecular beam epitaxy. A TiO2 interfacial layer is employed to produce high quality epitaxial growth of…

Materials Science · Physics 2012-06-15 A. G. Swartz , Jared J. I. Wong , I. V. Pinchuk , R. K. Kawakami

The experimentally measured resistivity of Co(0001) and Ru(0001) single crystal thin films, grown on c-plane sapphire substrates, as a function of thickness is modeled using the semiclassical model of Fuchs-Sondheimer. The model fits show…

We report epitaxial growth of $\beta$-Ag2Te thin films by molecular beam epitaxy. $\beta$-Ag2Te, recently identified as a topological insulator, was grown by depositing Ag on InP substrate at room temperature followed by Te supply at…

Materials Science · Physics 2026-03-17 Ayuki Takegawa , Kouya Imoto , Minoru Kawamura , Moeta Tsukamoto , Ryutaro Yoshimi

Strain-engineering is a powerful means to tune the polar, structural, and electronic instabilities of incipient ferroelectrics. KTaO3 is near a polar instability and shows anisotropic superconductivity in electron-doped samples. Here, we…

Using real-time spectroscopic ellipsometry, we directly observed a reversible lattice and electronic structure evolution in SrCoOx (x = 2.5 - 3) epitaxial thin films. Drastically different electronic ground states, which are extremely…

Strongly Correlated Electrons · Physics 2013-08-29 Woo Seok Choi , Hyoungjeen Jeen , Jun Hee Lee , S. S. Ambrose Seo , Valentino R. Cooper , Karin M. Rabe , Ho Nyung Lee

Epitaxial NbO2 (110) films, 20 nm thick, were grown by pulsed laser deposition on Al2O3 (0001) substrates. The Ar/O2 total pressure during growth was varied to demonstrate the gradual transformation between NbO2 and Nb2O5 phases, which was…

Materials Science · Physics 2015-07-29 Toyanath Joshi , Tess R. Senty , Pavel Borisov , Alan D. Bristow , David Lederman

The epitaxial growth of functional materials using a substrate with a graphene layer is a highly desirable method for improving structural quality and obtaining free-standing epitaxial nano-membranes for scientific study, applications, and…

Transition metal oxide thin films show versatile electrical, magnetic, and thermal properties which can be tailored by deliberately introducing macroscopic grain boundaries via polycrystalline solids. In this study, we focus on the…

The epitaxial growth of complex oxides enables the production of high-quality films, yet substrate choice is restricted to certain symmetry and lattice parameters, thereby limiting the technological applications of epitaxial oxides. In…

The growth of atomically-flat thin films of ferroelectric PbTiO3 on SrTiO3 substrates, using molecular beam epitaxy, is reported. The main issue in the growth of these materials is the high volatility of lead. This can be largely overcome…

Materials Science · Physics 2007-05-23 Gijsbert Rispens , Beatriz Noheda
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