Combinatorial Growth of Vertically Aligned Nanocomposite Thin Films for Accelerated Exploration in Composition Variation

Author:

Rutherford Bethany X.12ORCID,Zhang Di2,Quigley Lizabeth1,Barnard James P.1,Yang Bo1,Lu Juanjuan1,Kunwar Sundar2,Dou Hongyi1,Shen Jianan1ORCID,Chen Aiping2,Wang Haiyan13ORCID

Affiliation:

1. School of Materials Engineering Purdue University West Lafayette Indiana 47907 USA

2. Center for Integrated Technology (CINT) Los Alamos National Laboratory Los Alamos New Mexico 87545 USA

3. School of Electrical and Computer Engineering Purdue University West Lafayette Indiana 47907 USA

Abstract

Combinatorial growth is capable of creating a compositional gradient for thin film materials and thus has been adopted to explore composition variation mostly for metallic alloy thin films and some dopant concentrations for ceramic thin films. This study uses a combinatorial pulsed laser deposition method to successfully fabricate two‐phase oxide–oxide vertically aligned nanocomposite (VAN) thin films of La0.7Sr0.3MnO3 (LSMO)‐NiO with variable composition across the film area. The LSMO‐NiO compositional gradient across the film alters the two‐phase morphology of the VAN through varying nanopillar size and density. Additionally, the magnetic anisotropy and magnetoresistance properties of the nanocomposite thin films increase with increasing NiO composition. This demonstration of a combinatorial method for VAN growth can increase the efficiency of nanocomposite thin film research by allowing all possible compositions of thin film materials to be explored in a single deposition.

Funder

Basic Energy Sciences

Office of Science

National Science Foundation

Office of Naval Research

U.S. Department of Energy

Publisher

Wiley

Subject

General Earth and Planetary Sciences,General Environmental Science

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