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Vibrational investigation of indigo-palygorskite association(s) in synthetic Maya blue

机译:合成玛雅蓝中靛蓝-坡缕石缔合的振动研究

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摘要

A systematic investigation of the controversial association between indigo and palygorskite in Maya blue (MB), the famous Mesoamerican nano-hybrid pigment, is presented. It is based on vibrational spectroscopy up to near-infrared frequencies, as well as on X-ray diffraction and thermogravimetric analysis. The vibrational data point to a unique vibrational signature of the associated indigoid species over a broad range of experimental parameters (different octahedral composition of palygorskite, indigo concentration up to ca. 10 wt%, preparation temperature up to ca. 130 °C). This signature of MB includes bands attributed to the fundamental, combination, and overtone modes of N-H groups and proves that the associated species is indigo and not dehydroindigo. The high-wavenumber position of the N-H modes suggests that indigo is interacting weakly with the host matrix. The association with palygorskite proceeds with a log(time) kinetic law, provided that the tunnels of the clay are free from zeolitic H _2O. It is found that palygorskite with pre-dried tunnels forms MB even at ambient temperatures. On the contrary, palygorskite with pre-folded tunnels does not associate with indigo. These data are compatible with models involving the diffusion of indigo inside the tunnels of palygorskite. By filling the tunnels, indigo blocks their rehydration at ambient as well as their folding at higher temperatures. At ca. 220 °C, indigo in MB assumes quantitatively a different bonding arrangement. This high-temperature structural transformation of MB is slowly reversible upon rehydration at ambient and its onset is observed at relatively low temperatures (≥130 °C). Thus, MB synthesized above ca. 130 °C and not given sufficient time to rehydrate fully at ambient would still contain variable amounts of the high-temperature species, which may explain conflicting reports about the nature of the guest molecule.
机译:系统研究了著名的中美洲纳米杂化颜料玛雅蓝(MB)中靛蓝和坡缕石之间有争议的关联。它基于高达近红外频率的振动光谱学以及X射线衍射和热重分析。振动数据表明,在较宽的实验参数范围内(坡缕石的八面体组成不同,靛蓝浓度最高约10 wt%,制备温度最高约130°C),相关的靛类物种具有独特的振动特征。 MB的这一特征包括归因于N-H基团的基本,组合和泛音模式的谱带,并证明相关物种是靛蓝而不是脱氢靛蓝。 N-H模式的高波数位置表明靛蓝与宿主基质的相互作用较弱。与坡缕石的缔合以对数(时间)动力学定律进行,只要粘土的隧道不含沸石H _2O。发现即使在环境温度下,具有预干燥隧道的坡缕石也形成MB。相反,带有预折叠孔道的坡缕石与靛蓝不相关。这些数据与涉及坡缕石隧道内靛蓝扩散的模型兼容。通过填充隧道,靛蓝阻止了它们在环境中的补液以及在较高温度下的折叠。约于220°C,以MB为单位的靛蓝在定量上采用了不同的键合排列。 MB的这种高温结构转变在环境中再水合时是缓慢可逆的,并且在相对较低的温度(≥130°C)下观察到其开始。因此,大约在大约200nm处合成了MB。在130°C且没有足够的时间在室温下完全水合的情况下,仍然会包含可变数量的高温物质,这可能解释了有关客体分子性质的相互矛盾的报道。

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