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首页> 外文期刊>Clay Minerals >Full width at half maximum of low-angle basal phyllosilicate X-ray diffraction reflections: fitted peaks vs. diffraction traces
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Full width at half maximum of low-angle basal phyllosilicate X-ray diffraction reflections: fitted peaks vs. diffraction traces

机译:低角度基底硅酸盐X射线衍射反射的半峰全宽:拟合峰与衍射迹线

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Bernard Kubler measured illite 'crystallinity', the half-height width or full width at half maximum (FWHM) of the X-ray diffraction line of illite/mica at 10 angstrom, directly on the diffraction traces; this procedure has since been followed by the vast majority of workers. However, some workers have recently measured the FWHM of the fitted Pearson VII function rather than on the diffraction traces. The FWHM of this function for low-angle phyllosilicate diffraction peaks (FWHM*(PVII)) is almost consistently 'broader' than those measured directly on the diffraction trace profiles (FWHMtrace) by up to 0.08 degrees Delta 2 theta or the broader peaks. The Pearson VII function shows gentle curvature ('smoothing') at its tops and fast fading of the tails relative to virtually all 10 angstrom diffraction traces. The broad FWHM*(PVII) results from the consequent lowering/'under-fitting' of the peak tops and the upper tails and compensatory broadening/'over-fitting' of the intermediate peak flanks. FWHM*(PVII) 'contraction' with respect to FWHMtrace and enhancement of the peak maximum is found on traces of muscovite strips. The fitting reliabilities of the Cauchy function are almost invariably better than those of the Pearson VII function. Their FWHM*(Cauchy) values are narrower for both the illite/mica 10 angstrom and the chlorite 7 A reflections; although they still differ somewhat from the FWHMtrace, they are much closer, usually within 0.02 degrees Delta 2 theta. This markedly lesser broadening of FWHM* of the Cauchy of the Pearson VII function is the result of its stronger top curvature and notably faster tail fading (less 'smoothening'). For higher-angle mica peaks, the FWHM* values of the Pearson VII and Cauchy functions converge, usually differing only by 0.01-0.03 degrees Delta 2 theta for the 5 angstrom peak, and even less for the 3.3 angstrom peak. It is therefore strongly recommended that FWHM values of the illite/mica 10 A reflections be measured on the diffraction traces rather than on fitted functions. Where peak fitting is unavoidable (e.g. in order to separate the contributions of adjoining, partly resolved or unresolved reflections on broadened 10 angstrom reflections), Cauchy rather than Pearson VII functions should be used.
机译:Bernard Kubler直接在衍射迹线上测量了伊利石/云母的X射线衍射线在10埃时的伊利石“结晶度”,即半高宽度或半峰全宽(FWHM)。此后,绝大多数工人都遵循了这一程序。但是,一些工人最近测量了拟合的Pearson VII功能的FWHM,而不是衍射痕迹。低角度层状硅酸盐衍射峰(FWHM *(PVII))的此功能的FWHM几乎始终比直接在衍射迹线轮廓(FWHMtrace)上测量的“宽”高0.08度Delta2θ或更宽的峰。相对于几乎所有10埃衍射迹线,Pearson VII函数在其顶部显示出柔和的曲率(“平滑”),并且尾部快速褪色。宽的FWHM *(PVII)是由于峰顶和峰尾的降低/“欠拟合”以及中间峰侧面的补偿性拓宽/“过度拟合”而导致的。在白云母带的痕迹上发现了相对于FWHMtrace的FWHM *(PVII)“收缩”和峰最大值的增强。 Cauchy函数的拟合可靠性几乎总是比Pearson VII函数的拟合可靠性更高。对于伊利石/云母10埃和绿泥石7 A反射,它们的FWHM *(Cauchy)值都较窄;尽管它们仍然与FWHMtrace有所不同,但它们更接近,通常在0.02度Delta 2 theta以内。皮尔逊VII功能的柯西功能的FWHM *显着较小的展宽是其较高的顶部曲率和明显较快的尾部衰落(较少的“平滑”)的结果。对于更高角度的云母峰,Pearson VII和Cauchy函数的FWHM *值收敛,通常在5埃峰之间仅相差0.01-0.03度Delta2θ,而在3.3埃峰处甚至更小。因此,强烈建议在衍射迹线上而不是在拟合函数上测量伊利石/云母10 A反射的FWHM值。在不可避免的峰拟合的情况下(例如为了分离相邻的,部分分辨的或未分辨的反射对扩大的10埃反射的贡献),应使用柯西而不是皮尔森VII函数。

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