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  4. Growth Modification of Seeded Calcite by Carboxylic Acid Oligomers and Polymers: Toward an Understanding of Complex Growth Mechanisms
 
research article

Growth Modification of Seeded Calcite by Carboxylic Acid Oligomers and Polymers: Toward an Understanding of Complex Growth Mechanisms

Aschauer, Ulrich  
•
Ebert, Johannes
•
Aimable, Anne  
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2010
Crystal Growth and Design

Polycarboxylate molecules and oligomers have been investigated as growth modifiers during seeded calcite precipitation. To better understand possible molecular interactions and kinetic effects, additives with different structures and molecular weights have been investigated in this work. All additives show growth modifying effects, albeit less strongly for succinic acid and glutaric acid. This is attributed to a relatively weak interaction with the precipitated particles as well an additive size too small to influence the aggregation phase of the growth mechanism. Poly(acrylic acid) and poly(aspartic acid), on the other hand, led to strong growth modification, with the resulting particles being nanostructured, formed by an assembly of nanosized primary particles and consequently having a high specific surface area. Poly(aspartic acid) showed a stronger growth modifying effect than poly(acrylic acid) at a similar molecular weight and functional group concentration. This was not readily explainable without using molecular dynamics simulations (reported in a separate article), which suggests that the differences originate from the rigidity of the backbone and favorable electrostatic interactions between backbone nitrogen atoms and the surface in the case of poly(aspartic acid).

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Type
research article
DOI
10.1021/cg1005105
Web of Science ID

WOS:000281353900020

Author(s)
Aschauer, Ulrich  
Ebert, Johannes
Aimable, Anne  
Bowen, Paul  
Date Issued

2010

Publisher

American Chemical Society

Published in
Crystal Growth and Design
Volume

10

Start page

3956

End page

3963

Subjects

Seeded Calcite

•

Carboxylic Acid

•

Oligomers and Polymers

•

Complex Growth Mechanisms

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
LTP  
Available on Infoscience
December 15, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/62162
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