Synchrotron Light Research Institute, Nakhon Ratchasima 30000, Thailand.
J Synchrotron Radiat. 2012 Nov;19(Pt 6):937-43. doi: 10.1107/S090904951204109X. Epub 2012 Oct 18.
An energy-dispersive X-ray absorption spectroscopy beamline has been constructed at the Synchrotron Light Research Institute, Thailand. The beamline was designed to utilize the synchrotron radiation with photon energies between 2400 and 8000 eV. The horizontal focusing of the bent crystal in the energy-dispersive monochromator offers a small polychromatic focal spot of 1 mm at the sample position. By employing an energy-dispersive scheme, the whole X-ray absorption near-edge structure (XANES) can be obtained simultaneously using a position-sensitive detector with a fastest readout speed of 25 ms. The short data collection time opens a new opportunity for time-resolved X-ray absorption spectroscopy (XAS) experiments such as studies of changes of the electronic structures or the local coordination environments of an atom during a change in thermodynamic conditions. For this purpose, an in situ cell was designed and fabricated for the beamline. Thermal oxidation of TiO(2) was chosen as an in situ experiment example. The structural change of TiO(2) as a function of temperatures was monitored from the change in the measured XAS spectra. The obtained Ti K-edge XANES spectra clearly show the formation of an anatase phase when the temperature was raised to 673 K.
在泰国同步加速器研究中心建造了一条能量色散 X 射线吸收光谱学光束线。该光束线的设计目的是利用光子能量在 2400 到 8000 eV 之间的同步加速器辐射。在能量色散单色仪中,弯曲晶体的水平聚焦在样品位置处提供了一个 1 毫米的小多色焦斑。通过采用能量色散方案,可以使用最快读取速度为 25 ms 的位置灵敏探测器同时获得整个 X 射线近边结构(XANES)。较短的数据采集时间为时间分辨 X 射线吸收光谱学(XAS)实验开辟了新的机会,例如在热力学条件变化期间研究原子的电子结构或局部配位环境的变化。为此,为光束线设计并制造了一个原位电池。选择 TiO2的热氧化作为原位实验示例。通过测量的 XAS 光谱的变化来监测 TiO2的结构变化随温度的变化。获得的 Ti K 边 XANES 光谱清楚地显示了当温度升高到 673 K 时形成了锐钛矿相。