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Aminoethyl substitution enhances the self-assembly properties of an aminocellulose as a potential archaeological wood consolidant

Jennifer M. K. Wakefield; Robert Hampe; Richard B. Gillis; Agnes Sitterli; Gary G. Adams; Hartmut Kutzke; Thomas Heinze; Stephen E. Harding
European Biophysics Journal · Vol. 49, Issue 8 · pp. 791-798 · 2020

Abstract

The 6-deoxy-6-aminocelluloses—or “aminocelluloses”—are a class of synthetic natural cellulose derivatives which are mostly aqueous soluble and have excellent film-forming properties. Recent studies have connected these properties at the molecular level with protein-like self-associative behaviour for a range of aminocelluloses including a 6-deoxy-6-(ω-aminoethyl) aminocellulose AEA-1 with the association being a two-stage process—a reversible oligomerisation followed by further (semi-reversible) aggregation into larger structures. Here, we synthesise and compare a new 6-deoxy-6-(ω-aminoethyl) aminocellulose AEA-1′ with different degree of substitution with one with further alkyl derivatisation, namely 6-deoxy-6-(ω-hydroxyethyl) aminocellulose HEA-1′. As with AEA-1, sedimentation velocity and sedimentation equilibrium in the analytical ultracentrifuge still show a two-stage process for both AEA-1′ and HEA-1′, with the latter giving higher molar masses. The consequences of these properties for use as consolidants for archaeological wood are considered.

Bibliographic Information

JournalEuropean Biophysics Journal
PublisherSpringer
Publication Date2020-12-01
Publication Year2020
Volume49
Issue8
Pages791-798
Document TypeJournal Article
Print ISSN0175-7571
eISSN1432-1017
DOI10.1007/s00249-020-01451-y

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NARA Access Coverage1974-01-01~Current
Journal Homepagehttps://www.springer.com/journal/249
Publisher PageOpen Publisher Page
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