首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >A novel surface patterning nanorod: Hydroxyapatite nano labyrinth, promoted, induced and stabilized by tetrahydrofuran
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A novel surface patterning nanorod: Hydroxyapatite nano labyrinth, promoted, induced and stabilized by tetrahydrofuran

机译:一种新的表面图案化纳米棒:羟基磷灰石纳米迷宫,通过四氢呋喃促进,诱导和稳定化

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摘要

A novel surface patterning nanorod (hydroxyapatite nano labyrinth, HANL), covered with labyrinthine nano-grooves on surface, was successfully synthesized with the assistance of tetrahydrofuran (THF). THF as the sole organic molecule not only promoted HA crystal growth, but also induced and stabilized the hierarchical nanorod. XRD results indicated that HANLs were of high phase purity and were well crystallized. SEM and TEM images showed that HANLs were of the length of 75-425 nm and the width of 20-85 nm, and were of 1-9-nm wide grooves covering over the surface which were also confirmed by the N-2 adsorption analysis. The synthetic mechanism was proposed and explained in thermodynamics combined with theoretic calculations. This novel hierarchical HANLs may have great potential applications in bone replacement materials, composites, adsorbents, carriers, etc. This THF assisted synthetic strategy is green, low-cost, efficiently and surfactant-free, and may be useful in surface patterning other functional materials.
机译:通过四氢呋喃(THF)成功地合成了用Labyrinthine纳米槽覆盖的新型表面图案化纳米棒(羟基磷灰石纳米迷宫,Han1)。作为唯一的有机分子的THF不仅促进了HA晶体生长,而且还诱导和稳定了等级纳米棒。 XRD结果表明Hanls具有高相纯度并且结晶很好。 SEM和TEM图像显示HANL的长度为75-425nm,宽度为20-85nm,并且覆盖在表面上的1-9纳米宽的凹槽中,也通过N-2吸附分析证实。在热力学结合理论计算中提出并解释了合成机制。这种新型的等级Hanls可能在骨置换材料,复合材料,吸附剂,载体等中具有很大的潜在应用。该THF辅助合成策略是绿色的,低成本,有效和无表面活性剂,并且可能在表面图案化其他功能材料中有用。

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