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可再分散杂化纳米粉末:氧化铈纳米颗粒与膦酸化聚乙二醇低聚物的复合物

Redispersible hybrid nanopowders: cerium oxide nanoparticle complexes with phosphonated-PEG oligomers.

作者信息

Qi Ling, Sehgal Amit, Castaing Jean-Christophe, Chapel Jean-Paul, Fresnais Jérôme, Berret Jean-François, Cousin Fabrice

机构信息

Complex Fluid Laboratory, UMR CNRS/Rhodia 166, CRTB Rhodia Inc., 350 G. Patterson Boulevard, Bristol, Pennsylvania 19007, USA.

出版信息

ACS Nano. 2008 May;2(5):879-88. doi: 10.1021/nn700374d.

Abstract

Rare earth cerium oxide (ceria) nanoparticles are stabilized using end-functional phosphonated-PEG oligomers. The complexation process and structure of the resulting hybrid core-shell singlet nanocolloids are described, characterized, and modeled using light and neutron scattering data. The adsorption mechanism is nonstoichiometric, yielding the number of adsorbed chains per particle N(ads) = 270 at saturation. Adsorption isotherms show a high affinity of the phosphonate head for the ceria surface (adsorption energy DeltaG(ads) approximately -16kT) suggesting an electrostatic driving force for the complexation. The ease, efficiency, and integrity of the complexation is highlighted by the formation of nanometric sized cerium oxide particles covered with a well anchored PEG layer, maintaining the characteristics of the original sol. This solvating brushlike layer is sufficient to solubilize the particles and greatly expand the stability range of the original sol (<pH 3) up to pH = 9. We underscore two key attributes of the tailored sol: (i) strong UV absorption capability after functionalization and (ii) ability to redisperse after freeze-drying as powder in aqueous or organic solvents in varying concentrations as singlet nanocolloids. This robust platform enables translation of intrinsic properties of mineral oxide nanoparticles to critical end use.

摘要

使用末端官能化的膦酸化聚乙二醇(PEG)低聚物来稳定稀土氧化铈(二氧化铈)纳米颗粒。利用光散射和中子散射数据对所得的杂化核壳单重态纳米胶体的络合过程和结构进行了描述、表征和建模。吸附机制是非化学计量的,在饱和时每个颗粒吸附的链数N(ads)=270。吸附等温线表明膦酸酯头部对二氧化铈表面具有高亲和力(吸附能ΔG(ads)约为-16kT),这表明络合存在静电驱动力。纳米尺寸的氧化铈颗粒表面覆盖有牢固锚定的PEG层,同时保持了原始溶胶的特性,这突出了络合的简便性、高效性和完整性。这种溶剂化刷状层足以使颗粒溶解,并将原始溶胶(<pH 3)的稳定性范围大大扩展到pH = 9。我们强调了定制溶胶的两个关键特性:(i)功能化后具有强紫外线吸收能力;(ii)冻干后作为粉末在不同浓度的水性或有机溶剂中能以单重态纳米胶体形式重新分散。这个强大的平台能够将矿物氧化物纳米颗粒的固有特性转化为关键的最终用途。

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