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Comparison Study on the Adsorption Behavior of Chemically Functionalized Graphene Oxide and Graphene Oxide on Cement

机译:化学官能化石墨烯氧化物和石墨烯氧化物对水泥吸附性能的比较研究

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摘要

Chemical functionalization of graphene oxide (GO) is one kind of advanced strategy to eliminate the negative effects on the flowability of cement with GO. The adsorption behavior of admixture on cement plays a vital role in the flowability of cement-based materials. Herein, the comparison study on the adsorption behavior (including adsorption amount, adsorption kinetics, adsorption isotherms and adsorption layer thickness) of three kinds of chemically functionalized graphene oxides (CFGOs) with different polyether amine branched-chain lengths and GO on cement is reported. The results of CFGOs and GO adsorption data on cement particles were all best fitted with the pseudo-second-order kinetic model, and also conformed to the Freundlich isothermal model, indicating that the adsorption of CFGOs and GO on cement both were multilayer type and took place in a heterogeneous manner. The adsorption of CFGOs and GO on cement was not just physical adsorption, but also engaged chemical adsorption. In contrast to GO, the adsorption behavior of CFGOs on cement represented a lesser adsorption amount, weaker adsorption capacity and thinner adsorption layer thickness. Moreover, the longer the branched-chain length of CFGOs, the greater the decreasing degrees of adsorption amount, adsorption capacity and adsorption layer thickness. Due to the consumption of the carboxyl group (-COOH) by chemical functionalization, the anchoring effect of CFGOs was weaker than GO, and the steric hindrance effect generated from branched-chains which weakened the van der Waals forces among CFGOs layers. Moreover, the steric hindrance effect strengthened with the increasing branched-chain length, thus preventing the cement particles from aggregation, which resulted in satisfactory flowability of CFGOs with incorporation of cement rather than GO.
机译:氧化石墨烯(GO)的化学功能化是一种先进的战略,以消除对水泥与GO流动性的负面影响。外加剂对水泥的吸附行为起着水泥基材料的流动性至关重要的作用。在本文中,被报告了吸附行为(包括吸附量,吸附动力学,吸附等温线和吸附层厚度)三种化学官能化的石墨烯氧化物(CFGOs)具有不同的聚醚胺支链的长度和GO对水泥的比较研究。在水泥颗粒上CFGOs和GO吸附数据的结果均为最好装有伪二级动力学模型,并且还符合符合Freundlich等温模型,表明CFGOs和GO的对水泥的吸附两者都是多层型和花放置在非均相方式。 CFGOs和GO对水泥的吸附不仅仅是物理吸附,同时也从事化学吸附。在对比GO,CFGOs对水泥的吸附行为所表示的较小的吸附量,更弱的吸附容量和吸附薄的层厚度。此外,较长CFGOs,更大的减小度吸附量,吸附容量和吸附层厚度的的支链长度。由于由化学官能的羧基(-COOH)的消耗,CFGOs的锚定效果比GO较弱,并从其中削弱了范德CFGOs层之中Waals力支链生成的空间位阻效应。此外,位阻效应加强了与增加的支链长度,从而防止聚集的水泥颗粒,导致CFGOs的令人满意的流动性与水泥而不是GO的掺入。

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