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Liquid metal-based synthesis of high performance monolayer SnS piezoelectric nanogenerators

  • Hareem Khan
  • , Nasir Mahmood
  • , Ali Zavabeti
  • , Aaron Elbourne
  • , Md. Ataur Rahman
  • , Bao Yue Zhang
  • , Vaishnavi Krishnamurthi
  • , Paul Atkin
  • , Mohammad B. Ghasemian
  • , Jiong Yang
  • , Guolin Zheng
  • , Anil Ravindran
  • , Sumeet Walia
  • , Lan Wang
  • , Salvy P. Russo
  • , Torben Daeneke
  • , Yongxiang Li
  • , Kourosh Kalantar-Zadeh
  • Royal Melbourne Institute of Technology University
  • University of Melbourne
  • University of New South Wales
  • Deakin University

Research output: Contribution to journalArticlepeer-review

185 Citations (Scopus)
2 Downloads (Pure)

Abstract

The predicted strong piezoelectricity for monolayers of group IV monochalcogenides, together with their inherent flexibility, makes them likely candidates for developing flexible nanogenerators. Within this group, SnS is a potential choice for such nanogenerators due to its favourable semiconducting properties. To date, access to large-area and highly crystalline monolayer SnS has been challenging due to the presence of strong inter-layer interactions by the lone-pair electrons of S. Here we report single crystal across-the-plane and large-area monolayer SnS synthesis using a liquid metal-based technique. The characterisations confirm the formation of atomically thin SnS with a remarkable carrier mobility of ~35 cm2 V−1 s−1 and piezoelectric coefficient of ~26 pm V−1. Piezoelectric nanogenerators fabricated using the SnS monolayers demonstrate a peak output voltage of ~150 mV at 0.7% strain. The stable and flexible monolayer SnS can be implemented into a variety of systems for efficient energy harvesting.
Original languageEnglish
Article number3449
Number of pages8
JournalNature Communications
Volume11
Issue number1
DOIs
Publication statusPublished - 1 Dec 2020
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2020, The Author(s).

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