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EXAFS structural studies of electrodeposited Co and Ni hexacyanoferrate films

机译:电沉积钴和六氰合铁酸镍薄膜的EXAFS结构研究

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XAS (EXAFS and XANES), XPS and IR spectroscopies were used to extract redox compositional and structural information on films of electrodeposited Co and Ni hexacyanoferrates whose redox state was manipulated electrochemically. The X-ray methods provided direct information on the metal species and IR provided indirect information via the behaviour of the ligand vibration. XPS responses showed that the electrochemical response of Co hexacyanoferrate is attributable to Co (except for a small amount of Fe~(II) oxidation at very positive potentials), and of Ni hexacyanoferrate to Fe; XANES edge shifts confirm these deductions. Local structure around the metal atoms was extracted from EXAFS data in terms of M′-N, M′-C and M′-Fe (M′ = Co or Ni) distances and the associated Debye-Waller factors as functions of film charge state. For Co hexacyanoferrate, the redox variation of static disorder was consistent with a molecular model involving discrete Co~(II) and Co ~(III) sites, whose populations respond to potential, but not with a solid-state model.
机译:XAS(EXAFS和XANES),XPS和IR光谱仪用于提取电沉积Co和Ni氰基高铁酸盐的膜上的氧化还原组成和结构信息,该膜的氧化还原状态是​​通过电化学方式进行控制的。 X射线方法通过配体振动行为提供有关金属种类的直接信息,而IR提供间接信息。 XPS反应表明,六氰合铁酸钴的电化学反应归因于Co(除了在正电势下少量的Fe〜(II)氧化),六氰合铁酸镍对Fe的电化学反应。 XANES边移确认了这些推论。从EXAFS数据中以M'-N,M'-C和M'-Fe(M'= Co或Ni)距离以及相关的德拜-沃勒因子作为膜电荷状态的函数,从EXAFS数据中提取出金属原子周围的局部结构。对于六氰合高铁酸钴,静态失调的氧化还原变化与涉及离散的Co〜(II)和Co〜(III)位点的分子模型一致,后者的种群对电势有反应,但不是固态模型。

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