首页> 外文期刊>The Journal of Chemical Physics >Low-temperature binding of NO adsorbed on MIL-100(Al)-A case study for the application of high resolution pulsed EPR methods and DFT calculations
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Low-temperature binding of NO adsorbed on MIL-100(Al)-A case study for the application of high resolution pulsed EPR methods and DFT calculations

机译:NO吸附在MIL-100(AL)的低温结合-A案例研究,用于应用高分辨率脉冲EPR方法和DFT计算

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The low-temperature binding of nitric oxide (NO) in the metal-organic framework MIL-100(Al) has been investigated by pulsed electron nuclear double resonance and hyperfine sublevel correlation spectroscopy. Three NO adsorption species have been identified. Among them, one species has been verified experimentally to bind directly to an Al-27 atom and all its relevant N-14 and Al-27 hyperfine interaction parameters have been determined spectroscopically. Those parameters fit well to the calculated ones of a theoretical cluster model, which was derived by density functional theory (DFT) in the present work and describes the low temperature binding of NO to the regular coordinatively unsaturated Al3+ site of the MIL-100(Al) structure. As a result, the Lewis acidity of that site has been characterized using the NO molecule as an electron paramagnetic resonance active probe. The DFT derived wave function analysis revealed a bent end-on coordination of the NO molecule adsorbed at that site which is almost purely ionic and has a weak binding energy. The calculated flat potential energy surface of this species indicates the ability of the NO molecule to freely rotate at intermediate temperatures while it is still binding to the Al3+ site. For the other two NO adsorption species, no structural models could be derived, but one of them is indicated to be adsorbed at the organic part of the metal-organic framework. Hyperfine interactions with protons, weakly coupled to the observed NO adsorption species, have also been measured by pulsed electron paramagnetic resonance and found to be consistent with their attribution to protons of the MIL-100(Al) benzenetricarboxylate ligand molecules. Published by AIP Publishing.
机译:通过脉冲电子核双共振和高浓度的载玻片相关光谱研究了金属有机框架MIL-100(A1)中的一氧化氮(NO)的低温结合。三种没有吸附物种已经确定。其中,通过实验验证了一种物种以直接与Al-27原子结合,并且所有相关的N-14和Al-27高浓缩相互作用参数已经进行了光谱。那些参数适合于所计算的理论簇模型,其由本作中的密度官能理论(DFT)衍生,并描述了NO对常规协调的不饱和Al3 +位点的低温结合(Al ) 结构体。结果,该部位的路易斯酸度已经用NO分子作为电子顺磁共振活性探针表征。 DFT衍生的波函数分析显示出在该位点上吸附的NO分子的弯曲端部配位,该位点几乎纯粹是离子性的并且具有较弱的结合能量。该物种的计算的扁平电位能表面表明,没有分子在中间温度下自由旋转的能力,同时它仍然与Al3 +位点结合。对于另外两个没有吸附物种,没有可以得出结构模型,但其中一个被指示被吸附在金属有机骨架的有机部分。通过脉冲电子顺磁共振的脉冲电子顺磁共振,弱掺杂与观察到的质子的高血清相互作用也通过脉冲电子顺磁共振来测量,并发现它们与MIL-100(Al)苯齐纳羧酸甲酯配体分子的质子的归因一致。通过AIP发布发布。

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