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Chemical self-organization: A path to patterns

Chemical self-organization: A path to patterns
Chemical self-organization: A path to patterns
Scientists have long been intrigued by a mechanism first predicted by Alan Turing that leads to self-organizing chemical patterns. Now they have a guide to creating them experimentally.
1755-4330
340–341
Taylor, A.F.
08028a29-428d-4732-b6b1-f7a93389b386
Tinsley, M.R.
66fb4376-014d-48e2-9865-476099c27fd3
Taylor, A.F.
08028a29-428d-4732-b6b1-f7a93389b386
Tinsley, M.R.
66fb4376-014d-48e2-9865-476099c27fd3

Taylor, A.F. and Tinsley, M.R. (2009) Chemical self-organization: A path to patterns. Nature Chemistry, 1, 340–341. (doi:10.1038/nchem.310).

Record type: Article

Abstract

Scientists have long been intrigued by a mechanism first predicted by Alan Turing that leads to self-organizing chemical patterns. Now they have a guide to creating them experimentally.

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Published date: 2009

Identifiers

Local EPrints ID: 499253
URI: http://eprints.soton.ac.uk/id/eprint/499253
ISSN: 1755-4330
PURE UUID: caccaa59-75ab-4b48-b9bf-24894e8f97ed
ORCID for A.F. Taylor: ORCID iD orcid.org/0000-0003-0071-8306

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Date deposited: 12 Mar 2025 18:13
Last modified: 13 Mar 2025 03:14

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Contributors

Author: A.F. Taylor ORCID iD
Author: M.R. Tinsley

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