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Measurement of c-axis angular orientation in calcite (CaCO3) nanocrystals using X-ray absorption spectroscopy

机译:使用X射线吸收光谱法测量方解石(CaCO3)纳米晶体的c轴角取向

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摘要

We demonstrate that the ability to manipulate the polarization of synchrotron radiation can be exploited to enhance the capabilities of X-ray absorption near-edge structure (XANES) spectroscopy, to include linear dichroism effects. By acquiring spectra at the same photon energies but different polarizations, and using a photoelectron emission spectromicroscope (PEEM), one can quantitatively determine the angular orientation of micro- and nanocrystals with a spatial resolution down to 10 nm. XANES-PEEM instruments are already present at most synchrotrons, hence these methods are readily available. The methods are demonstrated here on geologic calcite (CaCO3) and used to investigate the prismatic layer of a mollusk shell, Pinctada fucata. These XANES-PEEM data reveal multiply oriented nanocrystals within calcite prisms, previously thought to be monocrystalline. The subdivision into multiply oriented nanocrystals, spread by more than 50°, may explain the excellent mechanical properties of the prismatic layer, known for decades but never explained.
机译:我们证明操纵同步加速器辐射极化的能力可以被利用来增强X射线吸收近边缘结构(XANES)光谱学的能力,以包括线性二色性效应。通过获取相同光子能量但偏振态不同的光谱,并使用光电子发射光谱显微镜(PEEM),可以定量确定空间分辨率低至10 nm的微晶体和纳米晶体的角取向。 XANES-PEEM仪器已经存在于大多数同步加速器中,因此这些方法很容易获得。这些方法在地质方解石(CaCO3)上进行了演示,并用于研究软体动物壳Pinctada fucata的棱柱层。这些XANES-PEEM数据揭示了方解石棱镜内以前被认为是单晶的多取向纳米晶体。细分成多个取向的纳米晶体(散布超过50°)可以解释棱柱层的出色机械性能,这是几十年来已知的,但从未解释过。

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