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首页> 外文期刊>Chemistry: A European journal >The Incorporation of Indigo Molecules in Sepiolite Tunnels
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The Incorporation of Indigo Molecules in Sepiolite Tunnels

机译:海泡石隧道中靛蓝分子的掺入

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摘要

Evidence for access of molecules the size of acetone or pyridine to the intracrystalline tunnels of nanofibre clay (sepiolite) has indicated formation of a new type of organic–inorganic nanocomposites. However, the introduction of larger molecules has been a recurring problem. It is now agreed that for indigo, the molecules are located on the external surface and at the ends of the fibres, thus blocking access to internal tunnels. We claim, however, that it is possible for indigo molecules to access the internal channels of sepiolite. FTIR and XRD analyses have provided evidence for folding of the sepiolite structure preheated at high temperature (above 350 8C). By comparison, we have shown that for indigo/sepiolite mixtures treated in the same conditions, no change in the crystalline structure of the sepiolite is observed, and that blue samples, related to Maya blue, with indigo molecules incorporated deeply enough into sepiolite to prevent folding of the tunnels, can be obtained. NMR, FTIR and thermal analysis confirm the interaction of indigo with the water coordinated to magnesium( II) and located inside the internal and external channels of sepiolite. Two other hypotheses are excluded; we show both that zeolitic water is not blocked in the tunnels by indigo, and that if thermal decomposition products of indigo can be formed, they are in a minority.
机译:丙酮或吡啶大小的分子进入纳米纤维粘土(海泡石)的晶内隧道的证据表明形成了一种新型的有机-无机纳米复合材料。但是,引入大分子一直是一个反复出现的问题。现在已经同意,对于靛蓝来说,分子位于纤维的外表面和末端,从而阻碍了进入内部通道的通道。但是,我们声称靛蓝分子有可能进入海泡石的内部通道。 FTIR和XRD分析提供了在高温(高于350 8C)下预热的海泡石结构折叠的证据。相比之下,我们已经发现,在相同条件下处理的靛蓝/海泡石混合物,未观察到海泡石的晶体结构发生变化,并且与玛雅蓝有关的蓝色样品中,靛蓝分子足够深地掺入海泡石中以防止可以折叠隧道。 NMR,FTIR和热分析证实了靛蓝与配位于镁(II)且位于海泡石内部和外部通道内的水之间的相互作用。另外两个假设被排除在外;我们既表明沸石水不会被靛蓝阻塞在隧道中,也表明如果能够形成靛蓝的热分解产物,则它们占少数。

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