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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Stability and flexibility of heterometallic formate perovskites with the dimethylammonium cation: pressure-induced phase transitions
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Stability and flexibility of heterometallic formate perovskites with the dimethylammonium cation: pressure-induced phase transitions

机译:异素甲酸钙酸盐与二甲基铵阳离子的稳定性和柔韧性:压力诱导的相变

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摘要

We report the high-pressure properties of two heterometallic perovskite-type metal-organic frameworks (MOFs) templated by dimethylammonium (NH2(CH3)(2), DMA(+)) with the general formula [DMA]MI0.5CrIII0.5(HCOO)(3), where M-I = Na+ (DMANaCr) and K+ (DMAKCr). The high-pressure Raman scattering studies show crystal instabilities in the 4.0-4.4 GPa and 2.0-2.5 GPa ranges for DMANaCr and DMAKCr, respectively. The mechanism is similar in the two compounds and involves strong deformation of the metal-formate framework, especially pronounced for the subnetwork of CrO6 octahedra, accompanied by substantial compressibility of the DMA(+) cations. Comparison with previous high-pressure Raman studies of sodium-chromium heterometallic MOFs show that the stability depends on the templated cation and increases as follows: ammonium < imidazolium < DMA(+). Density functional theory (DFT) calculations are performed to get a better understanding of the structural properties leading to the existence of phase transitions. We calculate the energy of the hydrogen bonds (HBs) between the DMA(+) cation and the metal formate cage, revealing a stronger interaction in the DMAKCr compound due to a HB arrangement that primarily involves the energetically preferred bonding to KO6 octahedra. This material however also has a smaller structural tolerance factor (TF) and a higher vibrational entropy than DMANaCr. This indicates a more flexible crystal structure, explaining the lower phase transition pressure, as well as the previously observed phase transition at 190 K, which is absent in the DMANaCr compound. The DFT high-pressure simulations show the largest contraction to be along the trigonal axis, leading to a minimal distortion of the HBs formed between the DMA(+) cations and the metal-formate sublattice.
机译:我们报道了通过二甲基铵(NH 2(CH3)(2),DMA(+))模板化的两个异素钙钛矿型金属 - 有机框架(MOF)的高压性能,其中通式[DMA] MI0.5crii0.5( HCOO)(3),其中MI = Na +(DMANACR)和K +(DMAKCR)。高压拉曼散射研究分别显示4.0-4.4 GPA和2.0-2.5 GPA的晶体稳定性,分别用于DMAMACR和DMAKCR。该机制在两种化合物中类似,涉及金属甲酸金属甲酸骨架的强烈变形,特别是CRO6 Octahedra的子网,伴随着DMA(+)阳离子的大量可压缩性。与先前的高压拉曼研究的比较铬杂项MOFS的研究表明,稳定性取决于模板阳离子,如下增加:铵<咪唑鎓

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