Bennett Caleb J, Brand Helen E A, Yuen Alexander K L, Nicholas Maria K, Kennedy Brendan J
School of Chemistry, University of Sydney, F11, Sydney, NSW 2006, Australia.
Australian Nuclear Science and Technology Organisation, Australian Synchrotron, 800 Blackburn Road, Clayton, Victoria 3168, Australia.
Inorg Chem. 2024 Mar 11;63(10):4681-4690. doi: 10.1021/acs.inorgchem.3c04288. Epub 2024 Feb 27.
The structural changes that accompany the dehydration of NaPtX·6HO (X = Cl, Br) were studied using in situ variable temperature synchrotron X-ray diffraction. The two hexahydrates are isostructural, containing isolated Pt octahedra separated by Na cations. Removal of the water results in the formation of the anhydrous vacancy ordered double perovskites NaPt. The Na cation is too small for the cuboctahedron site of the parent cubic structure, resulting in cooperative tilting of the Pt octahedra and lowering of the symmetry. Replacing Na with a larger alkali metal (K, Rb, or Cs) invariably enabled the isolation of the anhydrous hexahalide, and we found no evidence that these readily hydrated. For all cations, other than Na, it was possible to observe the archetypical cubic structure, although for the two potassium salts KPtBr and KPtI, this was only observed above a critical temperature of 175 and 460 K, respectively. As these two samples were cooled, symmetry lowering was observed, yielding a tetragonal structure initially and ultimately a monoclinic structure: 3̅ → 4/ → 2/. These phase transitions are associated with the onset of long-range cooperative tilting of the Pt octahedra described using the Glazer tilt notation as → → .
使用原位变温同步加速器X射线衍射研究了NaPtX·6H₂O(X = Cl,Br)脱水过程中伴随的结构变化。这两种六水合物是同构的,包含由Na⁺阳离子分隔的孤立Pt八面体。水的去除导致形成无水空位有序双钙钛矿Na₂PtX₆。Na⁺阳离子对于母体立方结构的立方八面体位置来说太小,导致Pt八面体协同倾斜并降低对称性。用较大的碱金属(K、Rb或Cs)取代Na始终能够分离出无水六卤化物,并且我们没有发现这些物质容易水合的证据。对于除Na之外的所有阳离子,都有可能观察到典型的立方结构,尽管对于两种钾盐K₂PtBr₆和K₂PtI₆,这仅分别在175 K和460 K的临界温度以上观察到。随着这两个样品冷却,观察到对称性降低,最初产生四方结构,最终产生单斜结构:3̅ → 4/mmm → 2/m。这些相变与Pt八面体的长程协同倾斜的开始有关,使用Glazer倾斜符号表示为a → b → c。