Title
Meta-chemistry for nanoscale chemical functionalization

CoPED ID
bb45e52b-008d-4a1e-bdb3-b2f2dd0a837f

Status
Closed


Value
No funds listed.

Start Date
Sept. 30, 2019

End Date
June 30, 2023

Description

More Like This


Nanoscale thermal gradients can then be exploited to drive
chemistry in a spatially selective manner. In the projectl we will develop a
fundamental understanding of how heat is generated and transported in a liquid
surrounding a nanostructure, thus providing the foundation for optimal spatial
control. Also crucially, we will synthesise thermally responsive polymers which
will be transformed in the locally heated solvent, creating nano-domains which
can be subsequently chemically functionalised. Using the meta-chemistry
concept cm2 of a nanostructured substrate can be both spatially and selectively
chemically modified, in preparation for subsequent chemical functionalisation, in
less than 60 seconds. The project is at the cusp of chemistry physics and
engineering, it will discover novel fundamental science which in the longer term
could be the foundation of a powerful flexible technology for the nanoscience

Adrian Lapthorn SUPER_PER
M Kadodwala SUPER_PER

Subjects by relevance
  1. Nanostructures
  2. Chemistry
  3. Nanotechnology
  4. Polymers

Extracted key phrases
  1. Chemistry physics
  2. Nanoscale chemical functionalization
  3. Nanoscale thermal gradient
  4. Meta
  5. Subsequent chemical functionalisation
  6. Novel fundamental science
  7. Concept cm2
  8. Fundamental understanding
  9. Selective manner
  10. Nanostructured substrate
  11. Heated solvent
  12. Optimal spatial
  13. Foundation
  14. Responsive polymer
  15. Long term

Related Pages

UKRI project entry

UK Project Locations