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Reply to comment on Couzi et al. (2018): a phenomenological model for structural phase transitions in incommensurate alkane/urea inclusion compounds

机译:回复对Couzi等人的评论。 (2018):不相称的烷烃/尿素包合物的结构相变的现象学模型

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摘要

In a recent paper (Couzi et al. 2018 R. Soc. open sci. >5, 180058. ()), we proposed a new phenomenological model to account for the I↔II↔“III” phase sequence in incommensurate n-alkane/urea inclusion compounds, which represents an alternative interpretation to that proposed in work of Toudic et al. In a Comment (Toudic et al. 2019 R. Soc. open sci. >6, 182073. ()), Toudic et al. have questioned our assignment of the superspace group of phase II of n-nonadecane/urea, which they have previously assigned, based on a (3 + 2)-dimensional superspace, as C2221(00γ)(10δ). In this Reply, we present new results from a comprehensive synchrotron single-crystal X-ray diffraction study of n-nonadecane/urea, involving measurements as a detailed function of temperature across the I↔II↔“III” phase transition sequence. Our results demonstrate conclusively that “main reflections” (h, k, l, 0) with h+k odd are observed in phase II of n-nonadecane/urea (including temperatures in phase II that are just below the transition from phase I to phase II), in full support of our assignment of the (3+1)-dimensional superspace group P212121(00γ) to phase II. As our phenomenological model is based on phase II and phase “III” of this incommensurate material having the same (3+1)-dimensional superspace group P212121(00γ), it follows that the new X-ray diffraction results are in full support of our phenomenological model.
机译:在最近的一篇论文中(Couzi等人,2018 R. Soc。open sci。> 5 ,180058。()),我们提出了一种新的现象学模型来解释I↔II↔“ III”阶段不相称的正构烷烃/尿素包合物中的序列,代表了Toudic等人工作中提出的另一种解释。 Toudic等人在评论中(Toudic等人,2019 R. Soc。open sci。> 6 ,182073.())。对我们之前根据(3 + 2)维超空间将n-十八烷/脲II期超空间组的分配质疑为C2221(00γ)(10δ)提出了质疑。在本答复中,我们介绍了对正十八烷/脲进行的全面同步加速器单晶X射线衍射研究的新结果,其中涉及作为I↔II↔“ III”相变序列温度的详细函数进行的测量。我们的结果最终证明,在正十九烷/脲的第二阶段(包括第二阶段的温度刚好低于从第一阶段到第二阶段的转变)中观察到了具有h + k奇数的“主反射”(h,k,l,0)。阶段II),完全支持我们将(3 + 1)维超空间群P212121(00γ)分配给阶段II。由于我们的现象学模型基于具有相同(3 + 1)维超空间群P212121(00 γ)的这种不相称材料的II相和“ III”相,因此得出了新的X-射线衍射结果完全支持我们的现象学模型。

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