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微波辅助水热法制备硅羟基磷灰石纳米粉末

Preparation of Silicon Hydroxyapatite Nanopowders under Microwave-Assisted Hydrothermal Method.

作者信息

Matamoros-Veloza Zully, Rendon-Angeles Juan Carlos, Yanagisawa Kazumichi, Ueda Tadaharu, Zhu Kongjun, Moreno-Perez Benjamin

机构信息

Graduate Division, Technological Institute of Saltillo, Tecnológico Nacional de México/(I.T. Saltillo), Saltillo 25280, Mexico.

Centre for Research and Advanced Studies of the NPI, Cinvestav-Campus Saltillo, Saltillo 25900, Mexico.

出版信息

Nanomaterials (Basel). 2021 Jun 11;11(6):1548. doi: 10.3390/nano11061548.

Abstract

The synthesis of partially substituted silicon hydroxyapatite (Si-HAp) nanopowders was systematically investigated via the microwave-assisted hydrothermal process. The experiments were conducted at 150 °C for 1 h using TMAS (CHNOSi) as a Si precursor. To improve the Si uptake in the hexagonal structure, the Si precursor was supplied above the stoichiometric molar ratio (0.2 M). The concentration of the TMAS aqueous solutions used varied between 0.3 and 1.8 M, corresponding to saturation levels of 1.5-9.0-fold. Rietveld refinement analyses indicated that Si incorporation occurred in the HAp lattice by replacing phosphate groups (PO) with the silicate (SiO) group. FT-IR and XPS analyses also confirmed the gradual uptake of SiO units in the HAp, as the saturation of Si reached 1.8 M. TEM observations confirmed that Si-HAp agglomerates had a high crystallinity and are constituted by tiny rod-shaped particles with single-crystal habit. Furthermore, a reduction in the particle growth process took place by increasing the Si excess content up to 1.8 M, and the excess of Si triggered the fine rod-shaped particles self-assembly to form agglomerates. The agglomerate size that occurred with intermediate (0.99 mol%) and large (12.16 mol%) Si contents varied between 233.1 and 315.1 nm, respectively. The excess of Si in the hydrothermal medium might trigger the formation of the Si-HAp agglomerates prepared under fast kinetic reaction conditions assisted by the microwave heating. Consequently, the use of microwave heating-assisted hydrothermal conditions has delivered high processing efficiency to crystallize Si-HAp with a broad content of Si.

摘要

通过微波辅助水热法系统研究了部分取代的硅羟基磷灰石(Si-HAp)纳米粉末的合成。实验在150℃下使用TMAS(CHNOSi)作为硅前驱体进行1小时。为了提高六边形结构中硅的吸收量,硅前驱体的供应量高于化学计量摩尔比(0.2M)。所用TMAS水溶液的浓度在0.3至1.8M之间变化,对应于1.5 - 9.0倍的饱和度水平。Rietveld精修分析表明,硅通过用硅酸根(SiO)取代磷酸根(PO)而掺入HAp晶格中。FT-IR和XPS分析也证实,随着硅饱和度达到1.8M,SiO单元逐渐被HAp吸收。TEM观察证实,Si-HAp团聚体具有高结晶度,由具有单晶习性的微小棒状颗粒组成。此外,通过将硅过量含量增加到1.8M,颗粒生长过程有所减少,并且过量的硅引发了细棒状颗粒的自组装以形成团聚体。中间(0.99mol%)和大量(12.16mol%)硅含量下出现的团聚体尺寸分别在233.1至315.1nm之间变化。水热介质中过量的硅可能会触发在微波加热辅助的快速动力学反应条件下制备的Si-HAp团聚体的形成。因此,使用微波加热辅助水热条件具有很高的加工效率,能够使具有广泛硅含量的Si-HAp结晶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d0e/8230859/5cf2e09de0ca/nanomaterials-11-01548-g001.jpg

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