Moiré straintronics: a universal platform for reconfigurable quantum materials | npj 2D Materials and Applications
Thank you for visiting nature.com. You are using a browser version with limited support for CSS. To obtain the best experience, we recommend you use a more up to date browser (or turn off compatibility mode in Internet Explorer). In the meantime, to ensure continued support, we are displaying the site without styles and JavaScript. Advertisement npj 2D Materials and Applications volume 7, Article number: 32 (2023) Cite this article 6078 Accesses 17 Citations 1 Altmetric Metrics details Large-scale two-dimensional (2D) moiré superlattices are driving a revolution in designer quantum materials. The electronic interactions in these superlattices, strongly dependent on the periodicity and symmetry of the moiré pattern, critically determine the emergent properties and phase diagrams. To date, the relative twist angle between two layers has been the primary tuning parameter for a given choice of constituent crystals. Here, we establish strain as a powerf
Download PDF Subjects Electronic properties and materials Phase transitions and critical phenomena Structure of solids and liquids Superconducting properties and materials Surfaces, interfaces and thin films Abstract Large-scale two-dimensional (2D) moiré superlattices are driving a revolution in designer quantum materials. The electronic interactions in these superlattices, strongly dependent on the periodicity and symmetry of the moiré pattern, critically determine the emergent properties and phase diagrams. To date, the relative twist angle between two layers has been the primary tuning par
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