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Bottom-up synthesis of aluminophosphate nanosheets by hydrothermal process

机译:水热工艺自下而上合成铝磷酸铝纳米液

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Hydrothermal treatment of aqueous mixtures of boehmite (AlOOH), phosphoric acid, and tetramethylammonium hydroxide provided two types of layered aluminophosphates having tetramethylammonium ion (TMA(+)) as an interlayer cation, despite the fact that TMA(+) ion acts as a structure-directing agent of microporous AlPO4 materials and less likely leads to a lamellar structure. The layered aluminophosphates were formed in amorphous gels, so that they were obtained as precipitates. Upon dispersing the precipitates to water under agitation, the layered aluminophosphates were transferred to the aqueous phase, resulting in transparent aqueous sols. Because they had bulky interlayer cation TMA(+), it is likely that in the sols, layered aluminophosphates were exfoliated, providing aluminophosphate nanosheets. Moreover, their characterization results suggest that the layered compound formed at 170 degrees C consisted of aluminophosphate layers with kanemite-like structure. Furthermore, the prolonged hydrothermal treatment at 170 degrees C led to the formation of microporous ATT-type AlPO4 crystals. Under the synthesis condition employed in this study, layered aluminophosphates were formed at early stage, and then structurally converted to microporous AlPO4 crystals. (C) 2017 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan.
机译:勃姆石(ALOOH),磷酸和四甲基铵水性混合物的水热处理提供了两种类型的层状铝磷酸盐,其具有四甲基铵离子(TMA(+))作为层间阳离子,尽管TMA(+)离子作为结构 - 微孔ALPO4材料的分配剂,不太可能导致层状结构。层状硅铝形成为无定形凝胶,使其作为沉淀物获得。在搅拌下将沉淀物分散到水中时,将层状的烷磷酸盐转移到水相中,得到透明溶液。因为它们具有庞大的层间阳离子TMA(+),可能在溶胶中,分层铝磷酸盐被剥离,提供铝磷酸铝瘤。此外,它们的表征结果表明,在170℃下形成的层状化合物由硅铝层组成,具有旋晶石状结构。此外,170℃的延长的水热处理导致形成微孔ATT型ALPO4晶体。在本研究中使用的合成条件下,在早期形成分层的铝磷酸盐,然后在结构上转化为微孔ALPO 4晶体。 (c)2017年日本粉末科技学会。由elsevier b.v发表。和日本粉末科技会。

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