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Role of electrostatic potential energy in carbon nanotube augmented cement paste matrix

机译:静电势能在碳纳米管增强水泥浆基质中的作用

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The empirical data in conjunction with the quantum mechanical calculations show that the strength enhancement in the cement-carbon nanotubes (CNT5) composites is the courtesy of electrostatic potential energy. This is contrary to the general belief that the CNTs form bridges between the adjacent grains to slow down the breaking process. The yield point for the cement paste is improved up to 24% when prepared with 0.2% by weight of various types of CNTs. A significant strength enhancement is observed with carboxyl (-COOH) functionalized CNTs compared to other types. Further, an increase in the concentration of CNTs up to 0.4 wt% has a negative effect on the strength of the matrix. The electrostatic potential energy is mapped by using density functional theory (DFT) with omega 1397X-D functional. At lower concentration of CNTs, ion-dipole interaction in the cement paste and the CNTs creates a very strong long range intermolecular force. Due to the increased entropy resulting from the exothermic hydration process, these forces augment the strength of the cement paste. (C) 2019 Elsevier Ltd. All rights reserved.
机译:结合量子力学计算的经验数据表明,水泥-碳纳米管(CNT5)复合材料的强度增强是由静电势能提供的。这与碳纳米管在相邻晶粒之间形成桥以减慢断裂过程的一般观点相反。当用0.2重量%的各种类型的CNT制备时,水泥浆的屈服点提高至24%。与其他类型的羧基(-COOH)官能化的CNT相比,观察到了明显的强度增强。此外,将CNT的浓度增加至0.4wt%对基质的强度具有负面影响。静电势能通过使用带有omega 1397X-D功能的密度泛函理论(DFT)进行映射。在较低的CNT浓度下,水泥浆和CNT中的离子-偶极相互作用会产生很强的长程分子间力。由于放热水合过程导致的熵增加,这些力增强了水泥浆的强度。 (C)2019 Elsevier Ltd.保留所有权利。

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