Unsaturated transport properties of water molecules and ions in graphene oxide / hydrated calcium silicate nanochannels: from basic principles to complex environmental performance effects

Zhuye Huang, Yong Feng, Hongwei Wang, Lei Fan
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Abstract

The problems of traditional concrete such as brittleness, poor toughness and short service life of concrete engineering under acid rain or marine environment need to be solved urgently. Hydrated calcium silicate (C-S-H) is a key component to improve the mechanical properties and durability of concrete. However, the traditional method of concrete material design based on empirical models or comparative tests has become a bottleneck restricting the sustainable development of concrete. The synthesis method, molecular structure and properties of C-S-H were systematically described in this paper; The interface structure and interaction of graphene oxide / calcium silicate hydrate (C-S-H / GO) were discussed. On this basis, the saturated and unsaturated transport characteristics of ions and water molecules in C-S-H / GO nanochannels under the environment of ocean and acid rain were introduced. The contents of this review provide the basis for improving the multi-scale transmission theory and microstructure design of concrete. It has important guiding significance for analyzing and improving the service life of concrete in complex environment.
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氧化石墨烯/水合硅酸钙纳米通道中水分子和离子的不饱和输运特性:从基本原理到复杂的环境性能效应
传统混凝土在酸雨或海洋环境下易碎、韧性差、混凝土工程使用寿命短等问题亟待解决。水合硅酸钙(C-S-H)是提高混凝土力学性能和耐久性的关键成分。然而,传统的基于经验模型或对比试验的混凝土材料设计方法已经成为制约混凝土可持续发展的瓶颈。本文系统地介绍了C-S-H的合成方法、分子结构和性质;讨论了氧化石墨烯/水合硅酸钙(C-S-H / GO)的界面结构及其相互作用。在此基础上,介绍了海洋和酸雨环境下C-S-H / GO纳米通道中离子和水分子的饱和和不饱和输运特性。本文综述的内容为完善混凝土多尺度传输理论和混凝土微结构设计提供了依据。对分析和提高复杂环境下混凝土的使用寿命具有重要的指导意义。
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