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层状氢氧化锌盐:层离,氢氧化物薄片的择优取向,以及 ZnO 纳米盘的形成。

Layered zinc hydroxide salts: delamination, preferred orientation of hydroxide lamellae, and formation of ZnO nanodiscs.

机构信息

Institute of Inorganic Chemistry of the Academy of Sciences of the Czech Republic, v.v.i., 250 68 Řež, Czech Republic.

出版信息

J Colloid Interface Sci. 2011 Aug 15;360(2):532-9. doi: 10.1016/j.jcis.2011.04.024. Epub 2011 Apr 16.

DOI:10.1016/j.jcis.2011.04.024
PMID:21636093
Abstract

Delamination of layered zinc hydroxide salts (LZH) into hydroxide layers provides nanobuilding blocs of a two-dimensional anisotropy. The methodology, extent of delamination, the size and stability of hydroxide lamellae are described in detail. The ability of lamellae to restack to form oriented hydroxide films depends on the solvent, original LZH salt, and conditions used for delamination. The most interesting results were obtained using LZH intercalated with dodecyl sulfate anions and LZH nitrate delaminated in butanol at 60 °C and in formamide at room temperature, respectively. The former method produces hydroxide lamellae of a lateral size of ca. 10-20 nm. The inner structure of the hydroxide layers is conserved and separated lamellae restack to the original layered structure of LZH dodecyl sulfate. The latter method yields lamellae with a size decreasing from 73.3 nm to 10 nm after a 2-week aging, while their thickness is nearly constant (2.6-3.8 nm). However, the use of formamide is complicated by the formation of Zn(II) formate. The major part of LZH intercalated with dodecyl sulfate anions is transformed during the delamination procedure to anisotropic ZnO nanoparticles, either needle-like particles prolonged in the [0 0 1] direction or disc-like particles flattened along the (0 0 1) plane.

摘要

层状氢氧化锌盐(LZH)的分层会将其转化为具有二维各向异性的氢氧化层纳米建筑砌块。详细描述了分层方法、分层程度、氢氧化层片的尺寸和稳定性。层片重新堆积形成定向氢氧化膜的能力取决于溶剂、原始 LZH 盐以及用于分层的条件。最有趣的结果是使用十二烷基硫酸盐阴离子插层的 LZH 和分别在 60°C 的丁醇中和室温下的甲酰胺中分层的 LZH 硝酸盐获得的。前一种方法可产生约 10-20nm 横向尺寸的氢氧化层片。氢氧化层的内部结构得以保留,分离的层片重新堆积到 LZH 十二烷基硫酸盐的原始层状结构中。后一种方法得到的层片在老化 2 周后尺寸从 73.3nm 减小到 10nm,而其厚度几乎保持不变(2.6-3.8nm)。然而,使用甲酰胺会因形成 Zn(II)甲酸盐而变得复杂。在分层过程中,大部分十二烷基硫酸盐插层的 LZH 转化为各向异性的 ZnO 纳米粒子,要么是在 [001] 方向上延长的针状颗粒,要么是沿着(001)平面压扁的盘状颗粒。

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