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由铁离子调控的具有类釉质束状结构的氟磷灰石纳米棒阵列

Fluorapatite nanorod arrays with enamel-like bundle structure regulated by iron ions.

作者信息

Li Yidi, Ping Hang, Xie Quanmin, Yang G, Xu Jianguo, Zhong Mingming, Wang Kun

机构信息

State Key Laboratory of Precision Blasting, Jianghan University Wuhan 430056 P. R. China

Hubei Longzhong Laboratory Xiangyang 441000 Hubei P. R. China.

出版信息

RSC Adv. 2023 Sep 22;13(40):28112-28119. doi: 10.1039/d3ra03652a. eCollection 2023 Sep 18.

Abstract

Pigmented rodent tooth enamel is mainly composed of parallel hydroxyapatite nanorods and a small amount of organic matrix. These hydroxyapatite nanorods tend to be carbonated and contain traces of iron, fluorine, and magnesium. The pigmented rodent tooth enamel which contains trace iron is stronger and more resistant to acid corrosion than unpigmented rodent enamel, which could provide inspiration for the preparation and synthesis of high performance and corrosion resistant artificial materials. However, the regulatory role and mechanical enhancement of iron ions in enamel growth are unclear. Here, we synthesized enamel-like fluorapatite nanorod arrays using a mineralization technique at room-temperature. To investigate the regulatory effect of iron ions on the fluorapatite nanorod arrays (FAP-Fe), the phosphate solution is slowly transfused dropwise in the calcium ion solution, and different concentrations of iron ions are added to the calcium ion solution in advance. We demonstrated that fluorapatite nanorod arrays (FAP) can be epitaxially grown from amorphous calcium phosphate nanoparticles and iron ions can improve the microstructure of FAP nanorod arrays and obtain the same enamel bundle structure as the natural enamel. Moreover, high concentration of iron ions can inhibit the crystallization of fluorapatite. The FAP-Fe nanorod arrays controlled by 0.02 mM Fe have good mechanical properties. Their hardness is 1.34 ± 0.02 GPa and Young's modulus is 65.3 ± 0.4 GPa, respectively. This work is helpful to understand the role of trace elements in natural enamel in the regulation of enamel formation and to provide a theoretical foundation for the preparation of high strength artificial composites, which can play a greater role in the fields of biological alternative materials, anti-oil coating, oil/water separation, anti-bioadhesion and so on.

摘要

有色素的啮齿动物牙釉质主要由平行的羟基磷灰石纳米棒和少量有机基质组成。这些羟基磷灰石纳米棒往往会发生碳酸化,并含有微量的铁、氟和镁。含有微量铁的有色素啮齿动物牙釉质比无色素的啮齿动物牙釉质更强,更耐酸腐蚀,这可为高性能耐腐蚀人工材料的制备和合成提供灵感。然而,铁离子在牙釉质生长中的调节作用和机械增强作用尚不清楚。在此,我们采用室温矿化技术合成了类牙釉质氟磷灰石纳米棒阵列。为了研究铁离子对氟磷灰石纳米棒阵列(FAP-Fe)的调节作用,将磷酸盐溶液缓慢逐滴注入钙离子溶液中,并预先向钙离子溶液中加入不同浓度的铁离子。我们证明氟磷灰石纳米棒阵列(FAP)可以从无定形磷酸钙纳米颗粒外延生长,铁离子可以改善FAP纳米棒阵列的微观结构,并获得与天然牙釉质相同的釉柱束结构。此外,高浓度的铁离子可以抑制氟磷灰石的结晶。由0.02 mM铁控制的FAP-Fe纳米棒阵列具有良好的力学性能。它们的硬度分别为1.34±0.02 GPa,杨氏模量为65.3±0.4 GPa。这项工作有助于理解天然牙釉质中微量元素在牙釉质形成调节中的作用,并为高强度人工复合材料的制备提供理论基础,其在生物替代材料、防油涂层、油水分离、抗生物粘附等领域能发挥更大作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91a3/10517139/160b0f2f3152/d3ra03652a-f1.jpg

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