首页> 美国卫生研究院文献>Biochemical Journal >Analysis of the high-spin states of the 24Fe-4Se+ ferredoxin from Clostridium pasteurianum by Mössbauer spectroscopy.
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Analysis of the high-spin states of the 24Fe-4Se+ ferredoxin from Clostridium pasteurianum by Mössbauer spectroscopy.

机译:用穆斯堡尔光谱法分析巴氏梭菌中2 4Fe-4Se +铁氧还蛋白的高自旋态。

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摘要

A Mössbauer study of the three spin states of the reduced selenium-substituted 2[4Fe-4Se]+ ferredoxin from Clostridium pasteurianum was carried out at T = 1.6 K, in perpendicular and parallel applied magnetic fields of up to 10 T. In low (0.1 T) applied fields, the spectra of the classical S = 1/2 state exhibit magnetic hyperfine patterns arising from two pairs of iron atoms with opposite hyperfine fields. The S = 7/2 state is in the slow relaxation limit at T less than or equal to 4 K in the absence of applied field. The corresponding Mössbauer spectrum can be understood in terms of anti-parallel coupling between one high-spin Fe3+ ion (Hhf = +21.2 T) and three high-spin Fe2+ ions (Hhf,xy = -25.5 T, Hhf,z = -28.5 T). For the S = 3/2 spin state, the use of high (8-10 T) applied fields was necessary to ensure the validity of the high-field approximation and overcome the intercluster spin-spin interaction. The spectral data obtained under such conditions allowed the determination of the hyperfine field (-4.2 T) and a tentative estimation of the zero-field splitting (D approximately less than 3 cm-1).
机译:Mössbauer研究了巴氏梭菌中还原的硒取代的2 [4Fe-4Se] +铁氧还蛋白的三个自旋态,温度为T = 1.6 K,垂直和平行施加的磁场最高为10T。在0.1 T)的外加磁场下,经典S = 1/2态的光谱显示出由两对具有相反超精细场的铁原子产生的磁性超精细模式。在没有施加电场的情况下,S = 7/2状态处于T小于或等于4 K的慢弛豫极限。相应的Mössbauer光谱可通过一个高自旋Fe3 +离子(Hhf = +21.2 T)和三个高自旋Fe2 +离子(Hhf,xy = -25.5 T,Hhf,z = -28.5之间的反平行耦合来理解T)。对于S = 3/2的自旋态,必须使用高(8-10 T)的施加场来确保高场近似的有效性并克服集群间自旋-自旋相互作用。在这样的条件下获得的光谱数据允许确定超精细场(-4.2 T)并初步估计零场分裂(D大约小于3 cm-1)。

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