Clean assembly of van der Waals heterostructures using silicon nitride membranes

Author:

Wang WendongORCID,Clark NicholasORCID,Hamer Matthew,Carl AmyORCID,Tovari EndreORCID,Sullivan-Allsop SamORCID,Tillotson EvanORCID,Gao YunzeORCID,de Latour HugoORCID,Selles FranciscoORCID,Howarth JamesORCID,Castanon Eli G.,Zhou Mingwei,Bai Haoyu,Li Xiao,Weston Astrid,Watanabe KenjiORCID,Taniguchi TakashiORCID,Mattevi CeciliaORCID,Bointon Thomas H.,Wiper Paul V.,Strudwick Andrew J.ORCID,Ponomarenko Leonid A.,Kretinin Andrey V.ORCID,Haigh Sarah J.ORCID,Summerfield AlexORCID,Gorbachev RomanORCID

Abstract

AbstractVan der Waals heterostructures are fabricated by layer-by-layer assembly of individual two-dimensional materials and can be used to create a wide range of electronic devices. However, current assembly techniques typically use polymeric supports, which limit the cleanliness—and thus the electronic performance—of such devices. Here, we report a polymer-free technique for assembling van der Waals heterostructures using flexible silicon nitride membranes. Eliminating the polymeric supports allows the heterostructures to be fabricated in harsher environmental conditions (incompatible with a polymer) such as at temperatures of up to 600 °C, in organic solvents and in ultra-high vacuum. The resulting heterostructures have high-quality interfaces without interlayer contamination and exhibit strong electronic and optoelectronic behaviour. We use the technique to assemble twisted-graphene heterostructures in ultra-high vacuum, resulting in a tenfold improvement in moiré superlattice homogeneity compared to conventional transfer techniques.

Publisher

Springer Science and Business Media LLC

Subject

Electrical and Electronic Engineering,Instrumentation,Electronic, Optical and Magnetic Materials

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