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The UK National Crystallography Service; its origins, methods and science

The UK National Crystallography Service; its origins, methods and science
The UK National Crystallography Service; its origins, methods and science
This review charts the origins, founding, and continuous subsequent development of the UK National Crystallography Service (NCS) over a period spanning almost four decades. Particular attention is paid to personnel, instrumentation and systems development and funding regimes. From the start-up using standard, off-the-shelf, four-circle diffractometers, the review follows the strategy of the NCS in seeking to enhance both the methodology for data capture and data processing, and structure analysis and refinement, in support of a continuously growing demand by chemists for molecular and crystal structure characterization and interpretation. From instigating the transfer of computing policies from use of National or University centralized facilities to use of mini-mainframe computers, to desktop computers, via transputer-based processors, improvements in efficiency of computing were able to meet the improvements in rates of data capture. The latter process involved NCS-inspired development and use of short-wavelength X-ray area detectors, which has facilitated standard data capture processes per structure decreasing from days to minutes. More recently, the NCS has promoted high-flux sources, both by developing in-house systems and utilizing synchrotron radiation (Daresbury SRS and Diamond Light Source), as a means of tackling more and more demanding samples.
service crystallography, chemical crystallography, computing, X-ray sources, X-ray detectors, data management
0889-311X
117-154
Hursthouse, Michael B.
57a2ddf9-b1b3-4f38-bfe9-ef2f526388da
Coles, Simon J.
3116f58b-c30c-48cf-bdd5-397d1c1fecf8
Hursthouse, Michael B.
57a2ddf9-b1b3-4f38-bfe9-ef2f526388da
Coles, Simon J.
3116f58b-c30c-48cf-bdd5-397d1c1fecf8

Hursthouse, Michael B. and Coles, Simon J. (2014) The UK National Crystallography Service; its origins, methods and science. Crystallography Reviews, 20 (2), 117-154. (doi:10.1080/0889311X.2014.884565).

Record type: Article

Abstract

This review charts the origins, founding, and continuous subsequent development of the UK National Crystallography Service (NCS) over a period spanning almost four decades. Particular attention is paid to personnel, instrumentation and systems development and funding regimes. From the start-up using standard, off-the-shelf, four-circle diffractometers, the review follows the strategy of the NCS in seeking to enhance both the methodology for data capture and data processing, and structure analysis and refinement, in support of a continuously growing demand by chemists for molecular and crystal structure characterization and interpretation. From instigating the transfer of computing policies from use of National or University centralized facilities to use of mini-mainframe computers, to desktop computers, via transputer-based processors, improvements in efficiency of computing were able to meet the improvements in rates of data capture. The latter process involved NCS-inspired development and use of short-wavelength X-ray area detectors, which has facilitated standard data capture processes per structure decreasing from days to minutes. More recently, the NCS has promoted high-flux sources, both by developing in-house systems and utilizing synchrotron radiation (Daresbury SRS and Diamond Light Source), as a means of tackling more and more demanding samples.

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More information

Published date: 7 February 2014
Keywords: service crystallography, chemical crystallography, computing, X-ray sources, X-ray detectors, data management
Organisations: Organic Chemistry: Synthesis, Catalysis and Flow

Identifiers

Local EPrints ID: 362239
URI: http://eprints.soton.ac.uk/id/eprint/362239
ISSN: 0889-311X
PURE UUID: e31907d7-48e3-437e-8672-c2af31a9bc3d
ORCID for Simon J. Coles: ORCID iD orcid.org/0000-0001-8414-9272

Catalogue record

Date deposited: 18 Feb 2014 16:41
Last modified: 15 Mar 2024 03:01

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