Two-Dimensional graphene-related TRansition metal dichalcogenides for ultracapacitor ENergy storage Devices (2D TREND)

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Title
Two-Dimensional graphene-related TRansition metal dichalcogenides for ultracapacitor ENergy storage Devices (2D TREND)

CoPED ID
5aa43a5d-0ce2-46c0-8a34-a8653d45a5e2

Status
Closed


Value
£479,170

Start Date
Aug. 31, 2016

End Date
Aug. 31, 2017

Description

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The discovery of graphene inspired exciting new research in to other two-dimensional (2D) materials, most

notably the 2D transition metal dichalcogenides (TMDs) which similarly to graphene can be exfoliated into

atomically thin nano-sheets with unusual electronic and optical properties. To date, most research on TMDs

has remained in the laboratory, in contrast to graphene which is already applied in new commercial products.

This project, entitled “Two-Dimensional TRansition metal dichalcogenides for ultra-capacitor ENergy storage

Devices” (2D TREND), aims to establish the feasibility of 2D-TMD materials for scale up and use in ultra-

capacitor energy storage for the smart grid. The project will develop methods to exfoliate 2D-TMD materials to

nano-sheets and integrate them into supercapacitor electrodes. This will be complemented by advanced

structural and chemical characterisation to develop understanding of the material properties. The project will

demonstrate electrochemical cells which will enable the evaluation of the 2D-TMD materials for real-life energy

storage.

Zlatka Stoeva PM_PER

Subjects by relevance
  1. Graphene
  2. Nanomaterials
  3. Warehousing
  4. Energy
  5. Materials (matter)
  6. Supercapacitors
  7. Optical properties
  8. Smart grids
  9. Renewable energy sources

Extracted key phrases
  1. 2d transition metal dichalcogenide
  2. Dimensional transition metal dichalcogenide
  3. Ultracapacitor ENergy storage Devices
  4. Dimensional graphene
  5. Capacitor energy storage
  6. TMD material
  7. Material property
  8. Exciting new research
  9. 2D TREND
  10. New commercial product
  11. Project
  12. Thin nano
  13. Optical property
  14. TMDs
  15. Life energy

Related Pages

UKRI project entry

UK Project Locations