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Direct Observation of Spiral Growth, Particle Attachment, and Morphology Evolution of Hydroxyapatite

机译:直接观察羟基磷灰石的螺旋生长,颗粒附着和形态演变

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The two main pathways for the growth of calcium phosphates are either via the addition of monomeric chemical species to existing steps or via the attachment of precursor particles. Although recent experimental evidence suggests that the particle-attachment pathway is prevalent, real-time observations for the relative contributions of monomer by-monomer addition or attachment of particles to seed crystals remain limited. Here we present an in situ study of hydroxyapatite (HAP) (100) surface growth with long imaging times by atomic force microscopy (AFM). We observed that HAP crystallization occurred by either classical spiral growth or nonclassical particle-attachment from various supersaturated solutions at near-physiological conditions, suggesting these mechanisms do not need to be mutually exclusive. We provided, to our knowledge, the first evidence of time-resolved morphology evolution during particle attachment processes, ranging from primary spheroidal particles of different sizes to triangular and hexagonal solids formed by kinetically accessible organized assembly and aggregation. These direct observations of HAP surface growth provide mechanistic and kinetic insights into the complex biomineralization of bone and open a way for the synthesis of higher-order and morphology-controlled biomimetic materials made of precursor nanoparticles.
机译:磷酸钙生长的两个主要途径是通过向现有步骤中添加单体化学物质或通过附着前体颗粒来实现。尽管最近的实验证据表明粒子附着途径是普遍的,但是实时观察到单体副单体添加或粒子附着在籽晶上的相对贡献仍然有限。在这里,我们通过原子力显微镜(AFM)提出了具有长成像时间的羟基磷灰石(HAP)(100)表面生长的原位研究。我们观察到,HAP的结晶是在近乎生理条件下,是由各种过饱和溶液中的经典螺旋生长或非经典颗粒附着引起的,这表明这些机理不需要相互排斥。据我们所知,我们提供了粒子附着过程中时间分辨形态演化的第一个证据,范围从不同大小的原生球状颗粒到通过动力学可访问的有组织组装和聚集形成的三角形和六边形固体。对HAP表面生长的这些直接观察为骨骼的复杂生物矿化提供了机械和动力学方面的见识,并为合成由前体纳米粒子制成的高阶和形态受控的仿生材料提供了一种途径。

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