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单晶 α-Fe2O3 斜方纳米平行六面体:高产合成、生长机制和结构增强的气敏性能。

Single-crystalline α-Fe2O3 oblique nanoparallelepipeds: high-yield synthesis, growth mechanism and structure enhanced gas-sensing properties.

机构信息

College of Chemistry and Materials Science, Anhui Key Laboratory of Functional Molecular Solids, Anhui Laboratory of Molecular-Based Materials, Anhui Normal University, Wuhu, 241000, PR China.

出版信息

Nanoscale. 2011 Feb;3(2):718-24. doi: 10.1039/c0nr00617c. Epub 2010 Nov 12.

Abstract

In this paper, single-crystalline α-Fe2O3 oblique nanoparallelepipeds are fabricated in high yield via a facile surfactant-free hydrothermal method, which involves oriented aggregation and Ostwald ripening. The obtained nanocrystals have exposed facets of {012}, {01-4} and {-210} with a rhombohedral α-Fe2O3 structure. The gas sensors based on the as-synthesized α-Fe2O3 nanostructures exhibit high sensitivity, short recovery time, and good reproducibility in ethanol and acetone. The superiority of the gas-sensing properties of the obtained nanostructures should be attributed to the surface structure of the nanocrystals. The as-prepared α-Fe2O3 nanocrystals are significant for exploiting their other applications in the future.

摘要

本文通过一种简便的无表面活性剂水热法,高产率地制备了单晶α-Fe2O3斜方纳米平行六面体,该方法涉及定向聚集和奥斯特瓦尔德熟化。所得到的纳米晶体具有暴露的{012}、{01-4}和{-210}面,具有菱面体α-Fe2O3结构。基于所合成的α-Fe2O3纳米结构的气体传感器在乙醇和丙酮中表现出高灵敏度、短恢复时间和良好的重现性。所获得的纳米结构的气体传感性能的优越性应归因于纳米晶体的表面结构。所制备的α-Fe2O3纳米晶体对于未来开发其在其他方面的应用具有重要意义。

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