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X 射线诱导 Mn L 边的样品损伤:溶液中过渡金属配合物软 X 射线光谱学的案例研究。

X-ray-induced sample damage at the Mn L-edge: a case study for soft X-ray spectroscopy of transition metal complexes in solution.

机构信息

Institute for Methods and Instrumentation for Synchrotron Radiation Research, Helmholtz-Zentrum Berlin für Materialien und Energie GmbH, Albert-Einstein-Str. 15, 12489 Berlin, Germany.

出版信息

Phys Chem Chem Phys. 2018 Jun 20;20(24):16817-16827. doi: 10.1039/c8cp03094d.

Abstract

X-ray induced sample damage can impede electronic and structural investigations of radiation-sensitive samples studied with X-rays. Here we quantify dose-dependent sample damage to the prototypical MnIII(acac)3 complex in solution and at room temperature for the soft X-ray range, using X-ray absorption spectroscopy at the Mn L-edge. We observe the appearance of a reduced MnII species as the X-ray dose is increased. We find a half-damage dose of 1.6 MGy and quantify a spectroscopically tolerable dose on the order of 0.3 MGy (1 Gy = 1 J kg-1), where 90% of MnIII(acac)3 are intact. Our dose-limit is around one order of magnitude lower than the Henderson limit (half-damage dose of 20 MGy) which is commonly employed for protein crystallography with hard X-rays. It is comparable, however, to the dose-limits obtained for collecting un-damaged Mn K-edge spectra of the photosystem II protein, using hard X-rays. The dose-dependent reduction of MnIII observed here for solution samples occurs at a dose limit that is two to four orders of magnitude smaller than the dose limits previously reported for soft X-ray spectroscopy of iron samples in the solid phase. We compare our measured to calculated spectra from ab initio restricted active space (RAS) theory and discuss possible mechanisms for the observed dose-dependent damage of MnIII(acac)3 in solution. On the basis of our results, we assess the influence of sample damage in other experimental studies with soft X-rays from storage-ring synchrotron radiation sources and X-ray free-electron lasers.

摘要

X 射线诱导的样品损伤会阻碍对用 X 射线研究的辐射敏感样品的电子和结构研究。在这里,我们使用 X 射线吸收光谱法在 Mn L 边对溶液中典型的 MnIII(acac)3 配合物在室温下进行软 X 射线范围内的剂量依赖性样品损伤进行了定量研究。随着 X 射线剂量的增加,我们观察到 MnII 物种的出现。我们发现半损伤剂量为 1.6 MGy,并定量出在光谱上可耐受的剂量约为 0.3 MGy(1 Gy = 1 J kg-1),其中 90%的 MnIII(acac)3 保持完整。我们的剂量限制比硬 X 射线蛋白质晶体学中常用的 Henderson 限制(半损伤剂量 20 MGy)低一个数量级左右。然而,与使用硬 X 射线收集未损坏的光系统 II 蛋白质 Mn K 边光谱的剂量限制相当。对于溶液样品,这里观察到的 MnIII 随着剂量的减少,其剂量限制比以前报道的固相铁样品软 X 射线光谱学的剂量限制小两到四个数量级。我们将测量结果与从头算受限活性空间(RAS)理论的计算光谱进行了比较,并讨论了观察到的 MnIII(acac)3 在溶液中剂量依赖性损伤的可能机制。基于我们的结果,我们评估了在存储环同步辐射源和 X 射线自由电子激光器的软 X 射线实验研究中样品损伤的影响。

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