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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Control of the Morphology and Particle Size of Boehmite Nanoparticles Synthesized under Hydrothermal Conditions
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Control of the Morphology and Particle Size of Boehmite Nanoparticles Synthesized under Hydrothermal Conditions

机译:水热条件下合成勃姆石纳米颗粒的形貌和粒径控制

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摘要

The spontaneous nucleation under hydrothermal conditions often leads to aggregation of crystallizing particles, which is an undesired phenomenon when the goal is the preparation of nanocry stals with narrow particle size distribution. The present paper reports on the synthesis of boehmite nanocrystals under hydrothermal conditions. An aqueous aluminum chloride salt solution was first prepared, and the pH was increased to 11 using a 5 M sodium hydroxide solution. The hydrothermal treatment was performed at 160 °C for different periods of time. The system yielded relatively small (15-40 nm) boehmite crystallites aggregated into larger (160 nm) particles. To avoid the aggregation, a biocompatible polymer, sodium polyacrylate (NaPa) 2100, was employed as a size-/morphology-controlling agent. Thus, stable colloidal suspensions of rounded boehmite nanoparticles having a size between 15 and 40 nm were obtained at 160 °C for 24 h. Further, the effect of synthesis time on the morphological features of boehmite synthesized in such a NaPa-containing system was investigated. The increase of the synthesis time from 24 to 168 h resulted in the formation of very long boehmite fibers (1000-2000 nm) with an average diameter of about 10 nm. The boehmite samples were characterized by XRD, DLS, TEM, IR, N2 adsorption, and zeta potential measurements. The colloidal stability of the obtained suspension was also studied.
机译:在水热条件下的自发成核作用通常会导致结晶颗粒的聚集,当目标是制备具有窄粒度分布的纳米晶体时,这是不希望的现象。本文报道了在水热条件下合成勃姆石纳米晶体的方法。首先制备氯化铝盐水溶液,并使用5M氢氧化钠溶液将pH提高至11。水热处理在160℃下进行了不同的时间。该系统产生相对较小的(15-40 nm)勃姆石微晶,聚集成较大的(160 nm)颗粒。为了避免聚集,将生物相容性聚合物聚丙烯酸钠(NaPa)2100用作尺寸/形态控制剂。因此,在160℃下保持24小时,获得了尺寸为15-40nm的圆形勃姆石纳米颗粒的稳定胶体悬浮液。此外,研究了合成时间对在这种含NaPa的体系中合成的勃姆石的形态特征的影响。合成时间从24小时增加到168小时导致形成非常长的勃姆石纤维(1000-2000 nm),平均直径约为10 nm。通过XRD,DLS,TEM,IR,N2吸附和Zeta电位测量对勃姆石样品进行表征。还研究了所得悬浮液的胶体稳定性。

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