Study on the Mechanical Performance, Durability, and Microscopic Mechanism of Cement Mortar Modified by a Composite of Graphene Oxide and Nano-Calcium Carbonate

Author:

Su Weicheng1,Liu Changjiang1,Bao Wei1,Zheng Zhoulian23ORCID,Ma Guangyi1,Deng Yaojun1,Ye Weihua1

Affiliation:

1. School of Civil Engineering, Guangzhou University, Guangzhou 510006, China

2. School of Civil Engineering, Chongqing University, Chongqing 400045, China

3. School of Intelligent Construction, Chongqing Jianzhu College, Chongqing 400072, China

Abstract

Nano-calcium carbonate (NC) is a novel ultrafine solid powder material that possesses quantum size effects, small size effects, surface effects, and macroscopic quantum effects that ordinary calcium carbonate lacks. As a nanomaterial with superior properties, graphene oxide (GO) has been studied extensively in the field of construction. In microscopic characterization, the reaction between NC and tricalcium aluminate (C3A) formed a new hydration product, hydrated calcium aluminum carbonate (C3A·CaCO3·11H2O), which enhanced the arrangement of hydration products and optimized the distribution of pore size in the mortar. Regarding the mechanical properties, the addition of GO and NC significantly enhanced the early-age mechanical performance of the mortar. In terms of durability, the incorporation of GO and NC significantly improved the water permeability, chloride ion permeability, and resistance to sulfate attack of the cement mortar. In this study, it was found that adding 1 wt% NC and 0.02 wt% GO not only improves the mechanical and durability properties but also promotes the hydration reaction according to the microstructure analysis. With the help of NC, compared with other studies, the amount of GO is reduced, while the cost is reduced, and the application of GO in the field of cement-based materials is promoted.

Funder

Chongqing Technology Innovation and Application Development Special General Project

Chongqing Construction Science and Technology Plan Key Project

Guangzhou Basic and Applied Basic Research Project

Graduate Innovation Ability Training Project of Guangzhou University

Publisher

MDPI AG

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