Cacciatore Andrea, Zardi Paolo, Capone Laura, Maggini Michele
Italcementi S.p.A.-Heidelberg Materials Via Stezzano, 87 24126 Bergamo Italy.
Dipartimento di Scienze Chimiche, Università di Padova Via F. Marzolo 1 35131 Padova Italy.
RSC Adv. 2024 Jan 19;14(5):3314-3320. doi: 10.1039/d3ra06886b. eCollection 2024 Jan 17.
Graphene-based materials (GBM) are promising cementitious composite additives that can significantly improve the mechanical characteristics and durability of concrete due to their unique properties, such as high surface area and aspect ratio and excellent tensile strength, to name a few. To display their full potential, GBM have to be homogeneously dispersed into the aqueous environment of cement-based matrices. The present study addresses the issue of limited dispersibility in the aqueous media of GBM through the chemical functionalization of mono- and few-layer graphene structures with hydrophilic aryl sulfonate groups and shows that a series of mortar samples containing modified GBM exhibit increased flexural and compressive strength by up to 17% and 30%, respectively, compared to mortar references without additives.
基于石墨烯的材料(GBM)是很有前景的水泥基复合材料添加剂,由于其独特的性能,如高表面积、高纵横比和优异的拉伸强度等,能够显著改善混凝土的力学性能和耐久性。为了充分发挥其潜力,GBM必须均匀分散在水泥基材料的水性环境中。本研究通过用亲水性芳基磺酸盐基团对单层和少层石墨烯结构进行化学功能化,解决了GBM在水性介质中分散性有限的问题,并表明与不含添加剂的砂浆参比样相比,一系列含有改性GBM的砂浆样品的抗折强度和抗压强度分别提高了17%和30%。