Split-split. A multiple synthesiser approach to efficient automated parallel synthesis

A multiple synthesiser approach to high efficiency, high throughput synthesis is described. It involves eliminating duplication in multi-step synthesis by establishing a cascade of matched synthesisers in which each machine performs a single step and provides feedstocks for the next instrument. The...

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Published inTetrahedron letters Vol. 40; no. 7; pp. 1405 - 1408
Main Authors Brooking, Paul, Doran, Andrew, Grimsey, Paul, Hird, Nicholas W., MacLachlan, William S., Vimal, Mythily
Format Journal Article
LanguageEnglish
Published OXFORD Elsevier Ltd 12.02.1999
Elsevier
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Abstract A multiple synthesiser approach to high efficiency, high throughput synthesis is described. It involves eliminating duplication in multi-step synthesis by establishing a cascade of matched synthesisers in which each machine performs a single step and provides feedstocks for the next instrument. The utility of this approach is illustrated by the efficient construction of a large array by a 4 step solution synthesis. A multiple synthesiser approach to high-efficiency, high-throughput solution phase synthesis is described
AbstractList A multiple synthesiser approach to high efficiency, high throughput synthesis is described. It involves eliminating duplication in multi-step synthesis by establishing a cascade of matched synthesisers in which each machine performs a single step and provides feedstocks for the next instrument. The utility of this approach is illustrated by the efficient construction of a large array by a 4 step solution synthesis. (C) 1999 Elsevier Science Ltd. All rights reserved.
A multiple synthesiser approach to high efficiency, high throughput synthesis is described. It involves eliminating duplication in multi-step synthesis by establishing a cascade of matched synthesisers in which each machine performs a single step and provides feedstocks for the next instrument. The utility of this approach is illustrated by the efficient construction of a large array by a 4 step solution synthesis. A multiple synthesiser approach to high-efficiency, high-throughput solution phase synthesis is described
Author Vimal, Mythily
MacLachlan, William S.
Grimsey, Paul
Hird, Nicholas W.
Brooking, Paul
Doran, Andrew
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Cites_doi 10.1016/0040-4039(96)00659-4
10.1016/S0040-4020(01)89994-4
10.1016/0958-1669(95)80105-7
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10.1021/ar9502083
10.1002/ddr.430360102
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Snippet A multiple synthesiser approach to high efficiency, high throughput synthesis is described. It involves eliminating duplication in multi-step synthesis by...
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SubjectTerms Chemistry
Chemistry, Organic
Physical Sciences
Science & Technology
Title Split-split. A multiple synthesiser approach to efficient automated parallel synthesis
URI https://dx.doi.org/10.1016/S0040-4039(98)02620-3
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