Rationalizing the Effect of the MAA/PEGMA Ratio of Comb‐Shape Copolymers Synthetized by Aqueous Free‐Radical Copolymerization in the Hydration Kinetics of Ordinary Portland Cements

Author:

Beldarrain Sara1,Barquero Aitor1,Goracci Guido2,Dolado Jorge S.2,Leiza Jose Ramon1

Affiliation:

1. POLYMAT, Kimika Aplikatua Saila, Kimika Falkultatea University of the Basque Country UPV/EHU, Joxe Mari Korta Zentroa, Tolosa Hiribidea 72 Donostia‐San Sebastián 20018 Spain

2. Centro de Física de Materiales (CSIC, UPV/EHU) Materials Physics Center (MPC) Paseo Manuel de Lardizabal 5 Donostia‐San Sebastián 20018 Spain

Abstract

AbstractMethacrylic acid‐co‐poly(ethylene glycol methacrylate) (MAA‐co‐PEGMA) copolymers (MPEG‐type polycarboxylate ether (PCE) superplasticizers) are characterized by a comb‐like structure. Although they have been used for years as dispersants in cementitious formulations, their structure–property relationship is still not fully understood. In this work, PCEs with uniform composition and different charge‐density (N) or different side chain lengths (P) are synthesized by free‐radical copolymerization varying the MAA/PEGMA ratios and ethylene oxide units in the PEGMA macromonomers. The effect of these copolymers on the hydration kinetics of an Ordinary Portland Cement (OPC) is analyzed, and it is observed that by increasing the PCE concentration the hydration is delayed. For a given PCE concentration, the delay is longer as the MAA/PEGMA ratio increases or the side chain length of the PEGMA decreases. The hydration delay is proportional to the carboxylate dosage and all PCEs fit in a master curve proving that the microstructure of the PCEs synthesized by free‐radical copolymerization can be correlated with the hydration delay of a commercial OPC.

Funder

Ministerio de Ciencia e Innovación

Eusko Jaurlaritza

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Organic Chemistry,General Chemical Engineering

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