首页> 外文期刊>Physical chemistry chemical physics: PCCP >The structural, phonon and optical properties of [CH3NH3]M0.5CrxAl0.5-x(HCOO)(3) (M = Na, K; x=0, 0.025, 0.5) metal-organic framework perovskites for luminescence thermometry
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The structural, phonon and optical properties of [CH3NH3]M0.5CrxAl0.5-x(HCOO)(3) (M = Na, K; x=0, 0.025, 0.5) metal-organic framework perovskites for luminescence thermometry

机译:[CH3NH3] M0.5CRXAL0.5-X(HCOO)(3)(M = NA,K; x = 0,0.025,0.5)金属 - 有机框架Perovskites的结构,声子和光学性质

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摘要

We report the structural, phonon and luminescence studies of six heterometallic perovskite-type metal-organic frameworks (MOFs) templated by methylammonium cations (CH3NH3+ and MeA(+)) with the following formulae: [MeA]Na0.5Cr0.5(HCOO)(3) (MeANaCr), [MeA]K0.5Cr0.5(HCOO)(3) (MeAKCr), [MeA]Na0.5Al0.5(HCOO)(3) (MeANaAl), [MeA]K0.5Al0.5(HCOO)(3) (MeAKAl), [MeA]Na0.5Cr0.025Al0.475(HCOO)(3) (MeANaAlCr, 5 mol% of Cr3+ ions) and [MeA]K0.5Cr0.025Al0.475(HCOO)(3) (MeAKAlCr, 5 mol% of Cr3+ ions). All of them crystallise in a monoclinic system (P2(1)/n space group) with one MeA(+) cation in an asymmetric unit forming four medium-strength hydrogen bonds (HBs) with a metal-formate framework. The DSC measurements and XRD single-crystal studies show that the studied crystals do not undergo structural phase transitions in the 100-440 K range. The high tolerance factors indicate that there is not enough space for the re-orientational motions of the MeA(+) cations, explaining the lack of the structural phase transitions. We also present IR and Raman studies supported by the factor group analysis together with luminescence properties. We have shown that the strength of the crystal field parameter (D-q/B) varies in the 2.13-2.56 range depending on the chemical composition of the studied compounds. We show that perovskite-like formate MOFs with Na+ (K+) ions can be considered as potential candidates for non-contact thermometry in the 225-400 K (325 K) range.
机译:我们报告的由甲基铵阳离子(CH3NH3 +和MEA(+)),利用以下公式模板6杂金属钙钛矿型金属 - 有机骨架(MOF)的结构,声子和发光的研究:[MEA] Na0.5Cr0.5(HCOO) (3)(MeANaCr),[MEA] K0.5Cr0.5(HCOO)(3)(MeAKCr),[MEA] Na0.5Al0.5(HCOO)(3)(MeANaAl),[MEA] K0.5Al0。 5(HCOO)(3)(MeAKAl),[MEA] Na0.5Cr0.025Al0.475(HCOO)(3)(MeANaAlCr,5摩尔%的Cr3 +离子)和[MEA] K0.5Cr0.025Al0.475(HCOO )(3)(MeAKAlCr,5%(摩尔)Cr3 +的离子)。它们都在单斜晶系(P2(1)/ n间隔基)与一种MEA(+)阳离子结晶以不对称单元与金属甲酸盐框架形成四个中等强度氢键(HBS)。的DSC测量结果和XRD单晶研究表明,所研究的晶体不经历在100-440 K范围之外的结构相变。高公差因素表明,没有足够的空间用于MEA(+)阳离子的重新取向的运动,说明缺乏的结构相变。我们还提出红外和拉曼研究的支持与发光性能的因素分析组一起。我们已经表明,晶体场参数(d-Q / B)的强度取决于所研究的化合物的化学组合物中的2.13-2.56范围内变化。我们表明,钙钛矿型用Na +(K +)离子,甲酸的MOF可以被认为是在225-400 K(325 K)范围的非接触温度测量的潜在候选。

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