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Predicting anisotropic thermal displacements for hydrogens from solid-state NMR: A study on hydrogen bonding in polymorphs of palmitic acid

机译:从固态NMR预测氢的各向异性热位移:棕榈酸多晶型中氢键的研究

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摘要

The hydrogen-bonding environments at the COOH moiety in eight polycrystalline polymorphs of palmitic acid are explored using solid-state NMR. Although most phases have no previously reported crystal structure, measured 13C chemical shift tensors for COOH moieties, combined with DFT modeling establish that all phases crystallize with a cyclic dimer (R22(8)) hydrogen bonding arrangement. Phases A2, Bm and Em have localized OH hydrogens while phase C has a dynamically disordered OH hydrogen. The phase designated As is a mix of five forms, including 27.4% of Bm and four novel phases not fully characterized here due to insufficient sample mass. For phases A2, Bm, Em, and C the anisotropic uncertainties in the COOH hydrogen atom positions are established using a Monte Carlo sampling scheme. Sampled points are retained or rejected at the ± 1σ level based upon agreement of DFT computed 13COOH tensors with experimental values. The collection of retained hydrogen positions bear a remarkable resemblance to the anisotropic displacement parameters (i.e. thermal ellipsoids) from diffraction studies. We posit that this similarity is no mere coincidence and that the two are fundamentally related. The volumes of NMR-derived anisotropic displacement ellipsoids for phases with localized OH hydrogens are 4.1 times smaller than those derived from single crystal x-ray diffraction and 1.8 times smaller than the volume of benchmark single crystal neutron diffraction values.
机译:使用固态NMR探索了八种棕榈酸多晶型物中COOH部分的氢键环境。尽管大多数相没有以前报道的晶体结构,但通过测量COOH部分的 13 C化学位移张量,结合DFT建模可以确定所有相均以环状二聚体结晶。 R 2 2 8 氢键排列。相A2,Bm和Em具有局部OH氢,而相C具有动态无序的OH氢。标为As的相是五种形式的混合物,包括27.4%的Bm和四个由于样品量不足而在此处未完全表征的新型相。对于A2,Bm,Em和C相,使用蒙特卡洛采样方案确定COOH氢原子位置的各向异性不确定性。根据DFT计算的 13 COOH张量与实验值的一致,以±1σ的水平保留或拒绝采样点。保留的氢位置的收集与来自衍射研究的各向异性位移参数(即热椭圆体)非常相似。我们认为,这种相似性不仅仅是巧合,而且两者在根本上是相关的。具有局部OH氢相的NMR各向异性各向异性椭球体的体积比单晶X射线衍射得到的体积小4.1倍,比基准单晶中子衍射值的体积小1.8倍。

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