首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Exfoliated HNb3O8 nanosheets of enhanced acidity prepared by efficient contact of K2CO3 with Nb2O5
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Exfoliated HNb3O8 nanosheets of enhanced acidity prepared by efficient contact of K2CO3 with Nb2O5

机译:通过K2CO3与NB2O5的有效接触制备提高酸度的exfoliated HNB3O8纳米蛋白酶

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Although exfoliated HNb3O8 nanosheet (e-HNb3O8) is known to be a powerful catalyst in acid-catalyzed reactions, the preparation technique has limitations in its high-yield production. We herein report the enhanced exfoliation efficiency and recovery of e-HNb3O8 by contacting Nb2O5 solid with a diluted K2CO3 solution before ball milling (mechanochemical activation). The so-obtained e-HNb3O8 showed a larger specific surface area, a higher density of total acid sites and an improved catalytic performance in the dehydration of 2-heptanol and formic acid, compared to the corresponding sample prepared by the conventional solid-state mixing. The ball-milled K2CO3-Nb2O5 mixtures, layered KNb3O8, ion exchanged HNb3O8 and exfoliated HNb3O8 samples were characterized by PXRD, TEM-EDS, TGA-MS and SEM-EDS. The characterization results revealed more intercalated K+ ions in KNb3O8 particles as well as more homogeneous K2CO3-Nb2O5 mixture when the employed preparation technique was used. This is achieved by more infiltration of K2CO3 into Nb2O5 lattice before ball milling, thereby resulting in the above positive findings. Therefore, our approach has great potential to be extended to other niobate-containing nanosheet-type materials. (C) 2017 The Society of Powder Technology japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:虽然已知剥落的HNB3O8纳米胸(E-HNB3O8)是酸催化反应中强效催化剂,但制备技术在其高产率产生的限制。在球磨前通过使Nb 2 O 5固体与稀释的K2CO3溶液接触(机械化学活化),我们通过使Nb2O5固体接触来报告增强的剥离效率和E-HNB3O8的恢复。与通过常规固态混合制备的相应样品相比,所获得的E-HNB3O8显示出较大的比表面积,较高的总酸位点和脱水的催化性能,以及改善的2-庚醇和甲酸中的催化性能。通过PXRD,TEM-EDS,TGA-MS和SEM-EDS表征了球磨的K2CO3-NB2O5混合物,层状KNB3O8,离子交换的HNB3O8和剥离HNB3O8样品。表征结果揭示了KNB3O8颗粒中的更插层的K +离子以及当使用所用的制备技术时更均匀的K2CO3-NB2O5混合物。这是通过在球磨前将K 2 CO 3渗透到Nb2O5格子中的实现,从而导致上述阳性结果。因此,我们的方法具有很大的潜力,可以扩展到含有其他含有铌的纳米片型材料。 (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。版权所有。

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