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首页> 外文期刊>Zeitschrift fur Physik, B. Condensed Matter >Possible reaction coordinates in the metastable states of sodiumnitroprusside Na_2[Fe(CN)_5NO]2H_2O: a discussion based on neutron diffraction- and spectroscopic measurements
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Possible reaction coordinates in the metastable states of sodiumnitroprusside Na_2[Fe(CN)_5NO]2H_2O: a discussion based on neutron diffraction- and spectroscopic measurements

机译:亚硝普钠Na_2 [Fe(CN)_5NO] 2H_2O亚稳态的可能反应坐标:基于中子衍射和光谱测量的讨论

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摘要

The metastable states of sodiumnitroprusside Na_2[Fe(CN)_5NO]2H/D_2O are extremely stable at temperatures below 200 K. It is possible to allocate structural changes measured by neutron diffraction to measured spectroscopic parameters, but the amount of the structural change is relatively small for a reaction co-ordinate as the metastable states have an extremely long lifetime. Ne hypotheses for related systems try to explain such a phenomena in two ways: The first way is a 90° bending of the NO-bond in the metastable state, the second one an exchange of the oxygen and nitrogen atoms in the No-BOND (which can be regarded as an 180° bending). As such changes would be possible also from our density functional calculations, we re-investigated our neutron diffraction data using the new models. However, our results are not compatible with one of these models. On the contrary, the neutron diffraction data show partially opposite tendencies. We compare both models with EXAFS measurements, with vibrational spectroscopic results and the data found by Mossbauer spectroscopy We propose a potential scheme for all three states (GS, MS_I and MS_(II)) extracted from absorption and thermodynamic data to explain the electronic and energetic rearrangement, and the population dynamics.
机译:亚硝普钠Na_2 [Fe(CN)_5NO] 2H / D_2O的亚稳态在200 K以下的温度下极为稳定。可以将通过中子衍射法测得的结构变化分配给测得的光谱参数,但结构变化的量相对较大由于亚稳态具有极长的寿命,因此对于反应坐标而言较小。有关系统的新假设试图以两种方式解释这种现象:第一种方式是亚稳状态下的NO键弯曲90°,第二种方式是No-BOND中的氧和氮原子交换(可以视为180°弯曲)。由于我们的密度泛函计算也可能发生此类变化,因此我们使用新模型重新研究了中子衍射数据。但是,我们的结果与这些模型之一不兼容。相反,中子衍射数据显示出部分相反的趋势。我们将两种模型与EXAFS测量值,振动光谱结果和Mossbauer光谱法得到的数据进行比较。我们提出了从吸收和热力学数据中提取的所有三个状态(GS,MS_I和MS_(II))的潜在方案,以解释电子和高能重排以及人口动态。

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