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Moiré-Assisted Strain Transfer in Vertical van der Waals Heterostructures

Jenny Hu, Leo Yu, Xueqi Chen, Wanhee Lee, C. Mathew Mate, Tony F. Heinz

2023Nano Letters13 citationsDOIOpen Access PDF

Abstract

Strain provides a powerful method to study 2D monolayers and to tune their properties. The same approach also has great potential for van-der-Waals (vdW) heterostructures. However, we need to understand how strain can be applied to vertically stacked vdW structures, for which strain transfer from one layer to the next remains little explored. In our experiment, we fabricated vertical heterostructures consisting of transition metal dichalcogenides (TMDCs) monolayers that were deposited on a flexible substrate. These TMDC heterostructures allowed us to read out separately the strain in each monolayer by photoluminescence measurements. We find that, in TMDC heterostructures with large twist angles (>5°), strain transfer is limited. However, for aligned heterostructures with small twist angles (≤5°), near unity strain transfer efficiency is observed. We correlate this finding with the moiré domains formed in the aligned heterostructures by reconstruction.

Topics & Concepts

HeterojunctionMonolayervan der Waals forceMaterials sciencePhotoluminescenceStrain (injury)Substrate (aquarium)NanotechnologyCondensed matter physicsOptoelectronicsChemistryPhysicsMoleculeInternal medicineGeologyOceanographyMedicineOrganic chemistry2D Materials and ApplicationsGraphene research and applicationsMXene and MAX Phase Materials
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