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Origami Inspired Self-assembly of Patterned and Reconfigurable Particles
12:33

Origami Inspired Self-assembly of Patterned and Reconfigurable Particles

Published on: February 4, 2013

Functional behaviour from controlled self-assembly: challenges and prospects.

Michael D Ward1, Paul R Raithby

  • 1Department of Chemistry, University of Sheffield, Sheffield S3 7HF, UK. m.d.ward@sheffield.ac.uk

Chemical Society Reviews
|July 17, 2012
PubMed
Summary
This summary is machine-generated.

Artificial supramolecular assemblies can mimic nature's functional systems. This review discusses challenges and examples in host-guest chemistry and light-harvesting for advanced functional materials.

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Area of Science:

  • Supramolecular Chemistry
  • Materials Science

Background:

  • Naturally occurring multi-component systems exhibit complex functional behaviors.
  • Artificial supramolecular assemblies aim to replicate these functions.

Purpose of the Study:

  • Discuss challenges in creating functional artificial supramolecular assemblies.
  • Highlight examples of host-guest chemistry and light-harvesting systems.
  • Summarize future research directions.

Main Methods:

  • Review of existing literature on artificial supramolecular assemblies.
  • Analysis of host-guest chemistry in cage cavities.
  • Examination of light-harvesting in multi-chromophore arrays.

Main Results:

  • Identified limitations in achieving desired functions in artificial assemblies.
  • Demonstrated functional capabilities through host-guest and light-harvesting examples.
  • Outlined key challenges for future development.

Conclusions:

  • Artificial supramolecular assemblies offer promising avenues for functional materials.
  • Overcoming current limitations is crucial for realizing complex functions.
  • Future research should focus on design principles and integration strategies.