首页> 外文期刊>Journal of the American Chemical Society >Citric Acid Adsorption on TiO2 Nanoparticles in Aqueous Suspensions at Acidic and Circumneutral pH: Surface Coverage, Surface Speciation, and Its Impact on Nanoparticle−Nanoparticle Interactions
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Citric Acid Adsorption on TiO2 Nanoparticles in Aqueous Suspensions at Acidic and Circumneutral pH: Surface Coverage, Surface Speciation, and Its Impact on Nanoparticle−Nanoparticle Interactions

机译:柠檬酸在酸性和周围pH的悬浮液中对TiO2纳米颗粒的吸附:表面覆盖,表面形态及其对纳米粒子-纳米粒子相互作用的影响

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Citric acid plays an important role as a stabilizer in several nanomaterial syntheses and is a common organic acid found in nature. Here, the adsorption of citric acid onto TiO2 anatase nanoparticles with a particle diameter of ca. 4 nm is investigated at circumneutral and acidic pHs. This study focuses on both the details of the surface chemistry of citric acid on TiO2, including measurements of surface coverage and speciation, and its impact on nanoparticle behavior. Using macroscopic and molecular-based probes, citric acid adsorption and nanoparticle interactions are measured with quantitative solution phase adsorption measurements, attenuated total reflection-FTIR spectroscopy, dynamic light scattering techniques, and zeta-potential measurements as a function of solution pH. The results show that surface coverage is a function of pH and decreases with increasing pH. Surface speciation differs from the bulk solution and is time dependent. After equilibration, the fully deprotonated citrate ion is present on the surface regardless of the highly acidic solution pH indicating pKa values of surface adsorbed species are lower than those in solution. Nanoparticle interactions are also probed through measurements of aggregation and the data show that these interactions are complex and depend on the detailed interplay between bulk solution pH and surface chemistry.
机译:柠檬酸在几种纳米材料合成中起稳定剂的作用,是自然界中常见的有机酸。在此,柠檬酸在粒径为约2的TiO 2 锐钛矿纳米颗粒上的吸附。在环境pH和酸性pH下研究了4 nm。这项研究集中于柠檬酸在TiO 2 上的表面化学细节,包括表面覆盖率和形态的测量,以及其对纳米粒子行为的影响。使用基于宏观和分子的探针,可通过定量溶液相吸附测量,衰减全反射-FTIR光谱,动态光散射技术和ζ电位测量来测量柠檬酸的吸附和纳米颗粒的相互作用,这些都是溶液pH的函数。结果表明,表面覆盖率是pH的函数,并且随着pH的增加而降低。表面形态不同于本体溶液,并且是时间依赖性的。平衡后,表面完全存在去质子化的柠檬酸根离子,而与高酸性溶液的pH无关,这表明表面吸附物质的pK 值低于溶液中的pH。纳米粒子的相互作用也通过聚集的测量进行了探测,数据表明这些相互作用是复杂的,并且取决于本体溶液的pH值与表面化学之间的详细相互作用。

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