| Literature DB >> 33989008 |
Danfeng Li1,2,3, Carolina Adamo1, Bai Yang Wang1, Hyeok Yoon1, Zhuoyu Chen1, Seung Sae Hong1,2, Di Lu1, Yi Cui1,2, Yasuyuki Hikita2, Harold Y Hwang1,2.
Abstract
A new synthetic approach has recently been developed for the fabrication of freestanding crystalline perovskite oxide nanomembranes, which involves the epitaxial growth of a water-soluble sacrificial layer. By utilizing an ultrathin capping layer of SrTiO3, here we show that this sacrificial layer, as grown by pulsed laser deposition, can be stabilized in air and therefore be used as transferrable templates for ex situ epitaxial growth using other techniques. We find that the stability of these templates depends on the thickness of the capping layer. On these templates, freestanding superconducting SrTiO3 membranes were synthesized ex situ using molecular beam epitaxy, enabled by the lower growth temperature which preserves the sacrificial layer. This study paves the way for the synthesis of an expanded selection of freestanding oxide membranes and heterostructures with a wide variety of ex situ growth techniques.Entities:
Keywords: Freestanding oxide nanomembranes; MBE-grown SrTiO3; Sr3Al2O6 templates; ex situ synthesis; superconductivity; water-soluble
Year: 2021 PMID: 33989008 DOI: 10.1021/acs.nanolett.1c01194
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189