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Simulated calculation of surface acid-base equilibrium constants and surface species distribution of the nanoceria suspension

机译:纳米氧化铈悬浮液表面酸碱平衡常数和表面物种分布的模拟计算

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摘要

As artificial nano-enzymes and effective adsorbents, CeO2 nanomaterials have been extensively studied for their potential applications in biomedicine and environmental protection. However, the surface acid-base properties of nanoceria suspensions have not been fully studied. In this work, the ceria nanoparticles were synthesized by hydrothermal reaction and calcination. They have a BET specific surface area of 52.01 m(2)/g. FTIR and XPS showed that there are two amphoteric sites ( Ce(IV)-OH and Ce(III)-OH) and a trace acidic site ( Ce(III)-OCOOH) which can act as a site probe. The pH range of the acid-base reaction of surface hydroxyl groups of the CeO2 nanomaterials was determined by Gran plot method. The acidic ionization constants (log K-1, log K-2), site concentration (log C) of two amphoteric surface hydroxyl sites and pH(pzc) in three KNO3 supported electrolytes were simultaneously optimized by ProtoFit GUI v2.1 free software using Donnan Shell Model (DSM) and same initial parameters. Their surface species distribution was calculated by PHREEQCI 3.4.0 free software using Donnan model and database (phreeqc.dat). The results show that the proton transfer reaction occurred between Ce(IV)-OH and Ce(III)-OH sites. Therefore, this study reveals the surface acid-base properties, proton transfer behavior and pH(pzc) of the CeO2 suspension.
机译:作为人工纳米酶和有效的吸附剂,CeO2纳米材料在生物医学和环境保护方面的潜在应用已得到广泛研究。但是,纳米氧化铈悬浮液的表面酸碱性质尚未得到充分研究。在这项工作中,通过水热反应和煅烧来合成二氧化铈纳米颗粒。它们的BET比表面积为52.01 m(2)/ g。 FTIR和XPS显示存在两个两性位点(Ce(IV)-OH和Ce(III)-OH)和微量酸性位点(Ce(III)-OCOOH),可以用作位点探针。通过格兰图法确定了CeO2纳米材料表面羟基的酸碱反应的pH范围。使用ProtoFit GUI v2.1免费软件同时使用以下软件同时优化了三种KNO3负载电解质中的酸性电离常数(log K-1,log K-2),两个两性表面羟基位点的浓度(log C)和pH(pzc)。 Donnan Shell模型(DSM)和相同的初始参数。通过使用Donnan模型和数据库(phreeqc.dat)的PHREEQCI 3.4.0免费软件计算了它们的表面物种分布。结果表明质子转移反应发生在Ce(IV)-OH和Ce(III)-OH位之间。因此,这项研究揭示了CeO2悬浮液的表面酸碱性质,质子转移行为和pH(pzc)。

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