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Crystal growth control of rod-shaped ε-Fe2O3 nanocrystals

机译:棒状ε-Fe2O3纳米晶体晶体生长控制

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摘要

Herein we report crystal growth control of rod-shaped ε-Fe _(2) O _(3) nanocrystals by developing a synthesis based on the sol–gel technique using β-FeO(OH) as a seed in the presence of a barium cation. ε-Fe _(2) O _(3) nanocrystals are obtained over a wide calcination temperature range between 800 °C and 1000 °C. A low calcination temperature (800 °C) provides an almost cubic rectangular-shaped ε-Fe _(2) O _(3) nanocrystal with an aspect ratio of 1.4, whereas a high calcination temperature (1000 °C) provides an elongated rod-shaped ε-Fe _(2) O _(3) nanocrystal with an aspect ratio of 3.3. Such systematic anisotropic growth of ε-Fe _(2) O _(3) is achieved due to the wide calcination temperature in the presence of barium cations. The surface energy and the anisotropic adsorption of barium on the surface of ε-Fe _(2) O _(3) can explain the anisotropic crystal growth of rod-shaped ε-Fe _(2) O _(3) along the crystallographic a -axis. The present work may provide important knowledge about how to control the anisotropic crystal shape of nanomaterials.
机译:在此,通过在钡存在下,通过基于溶胶 - 凝胶技术的溶胶 - 凝胶技术发育合成来报告棒状ε-Fe _(2)o·纳米晶体的晶体生长控制。在钡存在下阳离子。在800℃和1000℃之间的宽煅烧温度范围内获得ε-Fe _(2)o o _(3)纳米晶体。低煅烧温度(800°C)提供具有1.4的纵横比的几乎立方矩形ε-Fe _(2)O型纳米晶体,而高煅烧温度(1000℃)提供细长杆 - 具有3.3的纵横比的ε-Fe _(2)O _(3)纳米晶体。由于钡阳离子存在的较宽煅烧温度,因此实现了ε-Fe _(2)O _(3)的这种系统各向异性生长。 ε-Fe _(2)O _(3)表面上的钡的表面能和各向异性吸附可以沿着晶体的杆状ε-Fe _(2)O _(3)的各向异性晶体生长。一个轴。目前的作品可以提供关于如何控制纳米材料的各向异性晶体形状的重要知识。

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