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Staging of organic and inorganic gallery cations in layered silicate heterostructures

机译:层状硅酸盐异质结构中有机和无机画廊阳离子的分级

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Heterostructured fluorohectorite clays with regularly alternating interlayers of inorganic and organic exchange cations have been prepared through ion exchange reaction of the sodium clay in aqueous suspension with half an equivalent of alkylammonium ions, In order to elucidate this staging-like behavior of the intercalates, the exchange process was examined for a series of onium ion surfactants of the type [CnH((2n+1))N(CmH(2m+1))(3)](+). One set of onium ions varied the alkyl chain length (n = 4-22), while maintaining a constant onium head group size (m = 4), A second set varied the head group size (m = 1-5), while the chain length remained fixed (n = 16), Two fundamental factors, namely, alkyl chain length and head group size determined staging behavior, The surfactant alkyl chain length determined the extent of Na+ replacement by onium ions, Relatively little Na+ exchange (similar to 10%) occurred for the short chain onium ions with n = 4, m = 4 and n = 6, m = 4, The replacement of Na+ by onium ions became more favorable as the alkyl chain length was increased to n = 8 or 10, For very hydrophobic surfactants with n greater than or equal to 12, onium ion uptake was essentially quantitative, affording 1:1 mixed Na+-onium ion intercalates, The "footprint" or area covered by the onium ion head group on the interlayer surface controlled heterostructure formation for the 1:1 intercalates, For m greater than or equal to 3 the head group footprint matched the clay surface charge density and precluded the mixing of organic and inorganic exchange cations within the same gallery, The segregation of the hydrophobic organic cations and the hydrophilic inorganic cations on the internal and external surfaces of two-nanolayer tactoids during the ion exchange process was proposed as the pathway for staging behavior in the heterostructured intercalates, The smaller footprints of trimethyl and triethyl onium ion head groups (m = 1, 2) allowed for comingling of the exchange ions on single-nanolayer tactoids and the formation of phase - segregated organic and sodium ion clays upon stacking of the tactoids. (C) 1998 Academic Press. [References: 19]
机译:通过将钠粘土在水悬浮液中与一半当量的烷基铵离子进行离子交换反应,制备了具有规则交替交替的无机和有机交换阳离子中间层的杂结构氟锂蒙脱石粘土。为了阐明这种层间行为,需要进行交换对一系列[CnH((2n + 1))N(CmH(2m + 1))(3)](+)类型的离子表面活性剂进行了测试。一组洋葱离子可改变烷基链长(n = 4-22),同时保持恒定的洋葱头基团大小(m = 4),第二组离子可改变头基团大小(m = 1-5),而链长保持固定(n = 16),两个基本因素,即烷基链长和头基团大小决定了分期行为,表面活性剂烷基链长决定了Na +被鎓离子取代的程度,Na +交换相对较少(类似于10 n = 4,m = 4和n = 6,m = 4的短链洋葱离子发生了%)。随着烷基链长增加到n = 8或10,用洋葱离子取代Na +变得更加有利。对于n大于或等于12的非常疏水的表面活性剂,基本上吸收了鎓离子,提供了1:1混合的Na +-鎓离子插层,“足迹”或层间表面受控结构上由鎓离子头基覆盖的区域1:1插层的形成,m大于或等于3 t头基足迹与粘土表面电荷密度相匹配,并且避免了在同一通道内有机和无机交换阳离子的混合。疏水性有机阳离子和亲水性无机阳离子在纳米过程中在两个纳米层触针的内外表面上的偏析。提出了离子交换过程作为在异质结构插层中进行分阶段行为的途径,三甲基和三乙基鎓离子头基团(m = 1、2)的足迹较小,使得交换离子在单纳米层触基体上融合在一起。相-触针堆积时分离出的有机和钠离子粘土。 (C)1998年学术出版社。 [参考:19]

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