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从无定形磷酸到纳米结构的羟磷灰石:通过固态 H 和 P NMR 及自旋动力学监测。

Step-by-step from amorphous phosphate to nano-structured calcium hydroxyapatite: monitoring by solid-state H and P NMR and spin dynamics.

机构信息

Institute of Chemical Physics, Vilnius University, LT-10257 Vilnius, Lithuania.

Institute of Chemistry, Vilnius University, LT-03225, Vilnius, Lithuania.

出版信息

Phys Chem Chem Phys. 2022 Aug 10;24(31):18952-18965. doi: 10.1039/d2cp02108k.

Abstract

The solid-state H, P NMR spectra and cross-polarization (CP MAS) kinetics in the series of samples containing amorphous phosphate phase (AMP), composite of AMP + nano-structured calcium hydroxyapatite (nano-CaHA) and high-crystalline nano-CaHA were studied under moderate spinning rates (5-30 kHz). The combined analysis of the solid-state H and P NMR spectra provides the possibility to determine the hydration numbers of the components and the phase composition index. A broad set of spin dynamics models (isotropic/anisotropic, relaxing/non-relaxing, secular/semi-non-secular) was applied and fitted to the experimental CP MAS data. The anisotropic model with the angular averaging of dipolar coupling was applied for AMP and nano-CaHA for the first time. It was deduced that the spin diffusion in AMP is close to isotropic, whereas it is highly anisotropic in nano-CaHA being close to the Ising-type. This can be caused by the different number of internuclear interactions that must be explicitly considered in the spin system for AMP (I-S spin pair) and nano-CaHA (I-S spin system with ≥ 2). The P-H distance in nano-CaHA was found to be significantly shorter than its crystallographic value. An underestimation can be caused by several factors, among those - proton conductivity a large-amplitude motion of protons (O-H tumbling and the short-range diffusion) that occurs along OH chains. The P-H distance deduced for AMP, the compound with HPO as the dominant structure, is fairly well matched to the crystallographic data. This means that the CP MAS kinetics is a capable technique to obtain complementary information on the proton localization in H-bonds and the proton transfer in the cases where traditional structure determination methods fail.

摘要

研究了在中等旋转速度(5-30 kHz)下,含有无定形磷酸盐相(AMP)、AMP+纳米结构羟基磷灰石(nano-CaHA)复合材料和高结晶纳米-CaHA 的一系列样品的固态 H、P NMR 谱和交叉极化(CP MAS)动力学。通过固态 H 和 P NMR 谱的综合分析,可以确定各组分的水合数和相组成指数。应用了一套广泛的自旋动力学模型(各向同性/各向异性、弛豫/非弛豫、瞬态/半非瞬态)并拟合了实验 CP MAS 数据。首次将各向异性模型与偶极耦合的角平均应用于 AMP 和 nano-CaHA。推断出 AMP 中的自旋扩散接近各向同性,而在接近伊辛型的 nano-CaHA 中则高度各向异性。这可能是由于在 AMP(I-S 自旋对)和 nano-CaHA(具有≥2 的 I-S 自旋系统)的自旋系统中,必须明确考虑核间相互作用的数量不同所致。在 nano-CaHA 中,P-H 距离明显短于其晶体学值。这种低估可能是由多种因素引起的,其中包括质子电导率、质子(O-H 翻滚和短程扩散)的大幅度运动,这些运动沿着 OH 链发生。对于 AMP(HPO 作为主要结构的化合物),推断出的 P-H 距离与晶体学数据非常吻合。这意味着 CP MAS 动力学是一种有能力的技术,可以在传统结构确定方法失败的情况下,获得关于氢键中质子定位和质子转移的补充信息。

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