Author:
Brown Keith A.,He Shu,Eichelsdoerfer Daniel J.,Huang Mengchen,Levy Ishan,Lee Hyungwoo,Ryu Sangwoo,Irvin Patrick,Mendez-Arroyo Jose,Eom Chang-Beom,Mirkin Chad A.,Levy Jeremy
Abstract
AbstractComplex-oxide interfaces host a diversity of phenomena not present in traditional semiconductor heterostructures. Despite intense interest, many basic questions remain about the mechanisms that give rise to interfacial conductivity and the role of surface chemistry in dictating these properties. Here we demonstrate a fully reversible >4 order of magnitude conductance change at LaAlO3/SrTiO3 (LAO/STO) interfaces, regulated by LAO surface protonation. Nominally conductive interfaces are rendered insulating by solvent immersion, which deprotonates the hydroxylated LAO surface; interface conductivity is restored by exposure to light, which induces reprotonation via photocatalytic oxidation of adsorbed water. The proposed mechanisms are supported by a coordinated series of electrical measurements, optical/solvent exposures, and X-ray photoelectron spectroscopy. This intimate connection between LAO surface chemistry and LAO/STO interface physics bears far-reaching implications for reconfigurable oxide nanoelectronics and raises the possibility of novel applications in which electronic properties of these materials can be locally tuned using synthetic chemistry.
Publisher
Springer Science and Business Media LLC
Cited by
68 articles.
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