Department of Mechanical and Manufacturing Engineering, Trinity Centre for Bioengineering, Trinity College Dublin, College Green, Dublin 2, Ireland.
Nanoscale. 2011 Feb;3(2):693-700. doi: 10.1039/c0nr00650e. Epub 2010 Nov 22.
Natural fibrous sepiolite with a high surface area, negative surface charge and porous structure is promising for hydroxyapatite (HAp) mineralization since the clay is naturally abundant and biocompatible. In this paper, the use of fibrous sepiolite as a template for growth of HAp nanocrystals was reported for the first time. Carbonated HAp nanorods with dimensions of 20-60 nm in length and 10-20 nm in diameter were successfully grown on the sepiolite surface with a preferred orientation to the c-axis. The critical nucleus radius of HAp in the presence of natural sepiolite was estimated as 0.296-0.312 nm. Strong acid-activation increased the specific surface area of the sepiolite by 205% and also transformed the sepiolite to silica fiber with an elastic modulus being 395% of the original value. The novel HAp/acid-activated sepiolite biocomposite has a specific surface area of 182 m2 g(-1) and an elastic modulus of over 20 GPa, considerably higher than those of the HAp synthesized without sepiolite. Such hierarchically assembled HAp/sepiolite biocomposites with controlled size and improved modulus open a new way to expand the applications of naturally abundant clays in biological load-bearing devices.
天然纤维状海泡石具有较大的比表面积、负表面电荷和多孔结构,由于其天然丰富且具有生物相容性,因此很适合用于羟基磷灰石(HAp)矿化。本文首次报道了将纤维状海泡石用作 HAp 纳米晶体生长的模板。成功地在海泡石表面上生长出具有 c 轴择优取向的碳酸化 HAp 纳米棒,其尺寸为 20-60nm 长和 10-20nm 直径。在天然海泡石存在的情况下,HAp 的临界核半径估计为 0.296-0.312nm。强酸活化使海泡石的比表面积增加了 205%,并将海泡石转化为弹性模量为原始值 395%的硅纤维。新型 HAp/酸活化海泡石生物复合材料的比表面积为 182m2g(-1),弹性模量超过 20GPa,明显高于没有海泡石合成的 HAp。这种具有可控尺寸和改善的模量的分级组装的 HAp/海泡石生物复合材料为在生物承载装置中扩展天然丰富的粘土的应用开辟了新途径。