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氩水合物三种不同非晶态形式的结构研究。

Structural investigation of three distinct amorphous forms of Ar hydrate.

作者信息

Brant Carvalho Paulo H B, Moraes Pedro Ivo R, Leitão Alexandre A, Andersson Ove, Tulk Chris A, Molaison Jamie, Lyubartsev Alexander P, Häussermann Ulrich

机构信息

Department of Materials and Environmental Chemistry, Stockholm University SE-10691 Stockholm Sweden

Department of Chemistry, Federal University of Juiz de Fora Juiz de Fora MG 36036-900 Brazil.

出版信息

RSC Adv. 2021 Sep 15;11(49):30744-30754. doi: 10.1039/d1ra05697b. eCollection 2021 Sep 14.

Abstract

Three amorphous forms of Ar hydrate were produced using the crystalline clathrate hydrate Ar·6.5HO (structure II, 3̄, ≈ 17.1 Å) as a precursor and structurally characterized by a combination of isotope substitution (Ar) neutron diffraction and molecular dynamics (MD) simulations. The first form followed from the pressure-induced amorphization of the precursor at 1.5 GPa at 95 K and the second from isobaric annealing at 2 GPa and subsequent cooling back to 95 K. In analogy to amorphous ice, these amorphs are termed high-density amorphous (HDA) and very-high-density amorphous (VHDA), respectively. The third amorph (recovered amorphous, RA) was obtained when recovering VHDA to ambient pressure (at 95 K). The three amorphs have distinctly different structures. In HDA the distinction of the original two crystallographically different Ar guests is maintained as differently dense Ar-water hydration structures, which expresses itself in a split first diffraction peak in the neutron structure factor function. Relaxation of the local water structure during annealing produces a homogeneous hydration environment around Ar, which is accompanied with a densification by about 3%. Upon pressure release the homogeneous amorphous structure undergoes expansion by about 21%. Both VHDA and RA can be considered frozen solutions of immiscible Ar and water in which in average 15 and 11 water molecules, respectively, coordinate Ar out to 4 Å. The local water structures of HDA and VHDA Ar hydrates show some analogy to those of the corresponding amorphous ices, featuring HO molecules in 5- and 6-fold coordination with neighboring molecules. However, they are considerably less dense. Most similarity is seen between RA and low density amorphous ice (LDA), which both feature strictly 4-coordinated HO networks. It is inferred that, depending on the kind of clathrate structure and occupancy of cages, amorphous states produced from clathrate hydrates display variable local water structures.

摘要

利用结晶包合物水合物Ar·6.5H₂O(结构II,3̄,≈17.1 Å)作为前驱体,制备了三种非晶态的氩水合物,并通过同位素取代(Ar)中子衍射和分子动力学(MD)模拟相结合的方法对其结构进行了表征。第一种形式是前驱体在95 K下1.5 GPa压力诱导非晶化形成的,第二种是在2 GPa下等压退火并随后冷却回95 K形成的。与非晶冰类似,这些非晶态分别被称为高密度非晶(HDA)和极高密度非晶(VHDA)。第三种非晶态(恢复非晶,RA)是在将VHDA恢复到常压(95 K)时获得的。这三种非晶态具有明显不同的结构。在HDA中,原来两种晶体学上不同的氩客体保持着不同密度的氩 - 水合结构差异,这在中子结构因子函数中的第一个衍射峰分裂中表现出来。退火过程中局部水结构的弛豫在氩周围产生了均匀的水合环境,同时伴随着约3%的致密化。压力释放后,均匀的非晶结构膨胀约21%。VHDA和RA都可以被认为是不混溶的氩和水的冻结溶液,其中平均分别有15个和11个水分子与氩配位至4 Å。HDA和VHDA氩水合物的局部水结构与相应的非晶冰有一些相似之处,其特征是HO分子与相邻分子形成5 - 和6 - 重配位。然而,它们的密度要低得多。RA与低密度非晶冰(LDA)之间的相似性最大,两者都具有严格的4 - 配位HO网络。据推断,根据包合物结构的种类和笼的占有率,由包合物水合物产生的非晶态具有可变的局部水结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94c7/9041099/3b67293a1029/d1ra05697b-f1.jpg

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