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纳米颗粒形态皂石粘土、钙霞石沸石及其混合物的合成与性质

Synthesis and Properties of Nanoparticle Forms Saponite Clay, Cancrinite Zeolite and Phase Mixtures Thereof.

作者信息

Shao Hua, Pinnavaia Thomas J

机构信息

Department of Chemistry, Michigan State University, East Lansing, MI 48824.

出版信息

Microporous Mesoporous Mater. 2010 Sep;133(1-3):10-17. doi: 10.1016/j.micromeso.2010.04.002.

DOI:10.1016/j.micromeso.2010.04.002
PMID:21709774
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3121892/
Abstract

The low-temperature synthesis (90°C) of nanoparticle forms of a pure phase smectic clay (saponite) and zeolite (cancrinite) is reported, along with phase mixtures thereof. A synthesis gel corresponding to the Si:Al:Mg unit cell composition of saponite (3.6:0.40:3.0) and a NaOH/Si ratio of 1.39 affords the pure phase clay with disordered nanolayer stacking. Progressive increases in the NaOH/Si ratio up to a value of 8.33 results in the co-crystallization of first garronite and then cancrinite zeolites with nanolath morphology. The resulting phase mixtures exhibit a compound particulate structure of intertwined saponite nanolayers and cancrinite nanolaths that cannot be formed through physical mixing of the pure phase end members. Under magnesium-free conditions, pure phase cancrinite nanocrystals are formed. The Si/Al ratio of the reaction mixture affects the particle morphology as well as the chemical composition of the cancrinite zeolite. Ordinarily, cancrinite crystallizes with a Si/Al ratio of 1.0, but a silicon-rich form of the zeolite (Si/Al=1.25) is crystallized at low temperature from a silica rich synthesis gel, as evidenced by (29)Si NMR spectroscopy and XEDS-TEM. Owing to the exceptionally high external surface areas of the pure phase clay (875 m(2)/g) and zeolite end members (8.9 - 40 m(2)/g), as well as their unique mixed phase composites (124 - 329 m(2)/g), these synthetic derivatives are promising model nanoparticles for studies of the bioavailability of poly-aromatic hydrocarbons immobilized in silicate bearing sediments and soils.

摘要

本文报道了纯相蒙脱石粘土(皂石)和沸石(钙霞石)纳米颗粒形式的低温合成(90°C)及其相混合物。一种对应于皂石Si:Al:Mg晶胞组成(3.6:0.40:3.0)且NaOH/Si比为1.39的合成凝胶可得到具有无序纳米层堆叠的纯相粘土。将NaOH/Si比逐步提高至8.33会导致首先形成钙板石,然后形成具有纳米板条形态的钙霞石沸石共结晶。所得的相混合物呈现出由交织的皂石纳米层和钙霞石纳米板条组成的复合颗粒结构,这是无法通过纯相端元的物理混合形成的。在无镁条件下,可形成纯相钙霞石纳米晶体。反应混合物中的Si/Al比会影响钙霞石沸石的颗粒形态以及化学成分。通常,钙霞石结晶时的Si/Al比为1.0,但通过(29)Si核磁共振光谱和能量过滤透射电子显微镜能谱(XEDS-TEM)证明,在低温下从富含二氧化硅的合成凝胶中可结晶出富硅形式的沸石(Si/Al = 1.25)。由于纯相粘土(875 m²/g)和沸石端元(8.9 - 40 m²/g)具有极高的外比表面积,以及它们独特的混合相复合材料(124 - 329 m²/g),这些合成衍生物有望成为用于研究固定在含硅酸盐沉积物和土壤中的多环芳烃生物有效性的模型纳米颗粒。