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具有铵阳离子的杂金属钙钛矿型金属有机骨架:[NH]NaCrAl(HCOO)(x = 0、0.025 和 0.5)的结构、声子和光学响应。

Heterometallic perovskite-type metal-organic framework with an ammonium cation: structure, phonons, and optical response of [NH]NaCrAl(HCOO) (x = 0, 0.025 and 0.5).

机构信息

Institute of Low Temperature and Structure Research, Polish Academy of Sciences, Wrocław, Poland.

出版信息

Phys Chem Chem Phys. 2018 Aug 29;20(34):22284-22295. doi: 10.1039/c8cp03788d.

Abstract

We report the synthesis, crystal structure, vibrational and luminescence properties of two heterometallic perovskite-type metal-organic frameworks (MOFs) containing the ammonium cation (NH4+, Am+): [NH4][Na0.5Cr0.5(HCOO)3] (AmNaCr) and [NH4][Na0.5Al0.475Cr0.025(HCOO)3] (AmNaAlCr) in comparison to the previously reported [NH4][Na0.5Al0.5(HCOO)3] (AmNaAl). The room-temperature crystal structure of AmNaCr and AmNaAlCr was determined to be R3[combining macron]. The hydrogen bonding (HB) energy calculated using density functional theory (DFT) agrees well with experimental data, and confirms the existence of almost identical H-bonding in AmNaCr and AmNaAl, with three short hydrogen bonds and a longer trifurcated H-bond. Temperature-dependent Raman measurements supported by differential scanning calorimetry show that AmNaCr does not undergo any structural phase transitions in the 80-400 K temperature range. The high-pressure Raman spectra of AmNaCr show the onset of two structural instabilities near 0.5 and 1.5 GPa. The first instability involves weak distortion of the framework, while the second leads to irreversible amorphization of the sample. High-pressure DFT simulations show that the unit cell of the AmNaCr compound contracts along the c axis, which leads to a shortening of the trifurcated H-bond. The optical properties show that both studied crystals exhibit Cr3+-based emission characteristic of intermediate ligand field strength.

摘要

我们报告了两种异金属钙钛矿型金属有机骨架(MOFs)的合成、晶体结构、振动和发光性质,它们含有铵阳离子(NH4+,Am+):[NH4][Na0.5Cr0.5(HCOO)3](AmNaCr)和[NH4][Na0.5Al0.475Cr0.025(HCOO)3](AmNaAlCr),并与之前报道的[NH4][Na0.5Al0.5(HCOO)3](AmNaAl)进行了比较。AmNaCr 和 AmNaAlCr 的室温晶体结构被确定为 R3[combining macron]。用密度泛函理论(DFT)计算的氢键(HB)能量与实验数据吻合良好,证实了 AmNaCr 和 AmNaAl 中存在几乎相同的氢键,有三个短氢键和一个较长的三叉形氢键。差示扫描量热法支持的温度依赖性拉曼测量表明,AmNaCr 在 80-400 K 温度范围内不会发生任何结构相变。AmNaCr 的高压拉曼光谱显示在 0.5 和 1.5 GPa 附近出现两个结构不稳定性。第一个不稳定性涉及框架的微弱变形,而第二个则导致样品不可逆非晶化。高压 DFT 模拟表明,AmNaCr 化合物的单元沿着 c 轴收缩,导致三叉形氢键缩短。光学性质表明,两种研究的晶体都表现出中间配体场强度的 Cr3+基发射特征。

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