De Angelis Dario, Longetti Luca, Bonano Gabriele, Pelli Cresi Jacopo Stefano, Foglia Laura, Pancaldi Matteo, Capotondi Flavio, Pedersoli Emanuele, Bencivenga Filippo, Krstulovic Marija, Menk Ralf Hendrik, D'Addato Sergio, Orlando Stefano, de Simone Monica, Ingle Rebecca A, Bleiner Davide, Coreno Marcello, Principi Emiliano, Chergui Majed, Masciovecchio Claudio, Mincigrucci Riccardo
CNR - Istituto Officina dei Materiali (IOM), Basovizza, Area Science Park, 34149 Trieste, Italy.
Lausanne Centre for Ultrafast Science, Ecole Polytechnique Fédérale de Lausanne, CH-1015 Lausanne, Switzerland.
J Synchrotron Radiat. 2024 May 1;31(Pt 3):605-612. doi: 10.1107/S1600577524001875. Epub 2024 Apr 9.
Experimental characterization of the structural, electronic and dynamic properties of dilute systems in aqueous solvents, such as nanoparticles, molecules and proteins, are nowadays an open challenge. X-ray absorption spectroscopy (XAS) is probably one of the most established approaches to this aim as it is element-specific. However, typical dilute systems of interest are often composed of light elements that require extreme-ultraviolet to soft X-ray photons. In this spectral regime, water and other solvents are rather opaque, thus demanding radical reduction of the solvent volume and removal of the liquid to minimize background absorption. Here, we present an experimental endstation designed to operate a liquid flat jet of sub-micrometre thickness in a vacuum environment compatible with extreme ultraviolet/soft XAS measurements in transmission geometry. The apparatus developed can be easily connected to synchrotron and free-electron-laser user-facility beamlines dedicated to XAS experiments. The conditions for stable generation and control of the liquid flat jet are analyzed and discussed. Preliminary soft XAS measurements on some test solutions are shown.
如今,对水性溶剂中稀溶液体系(如纳米颗粒、分子和蛋白质)的结构、电子和动力学性质进行实验表征是一项公开的挑战。X射线吸收光谱法(XAS)可能是实现这一目标最成熟的方法之一,因为它具有元素特异性。然而,典型的感兴趣的稀溶液体系通常由轻元素组成,这需要极紫外到软X射线光子。在这个光谱区域,水和其他溶剂相当不透明,因此需要大幅减少溶剂量并去除液体以最小化背景吸收。在这里,我们展示了一个实验终端站,其设计用于在与极紫外/软XAS透射几何测量兼容的真空环境中操作亚微米厚度的液体平面射流。所开发的仪器可以很容易地连接到专门用于XAS实验的同步加速器和自由电子激光用户设施光束线。分析并讨论了稳定产生和控制液体平面射流的条件。展示了对一些测试溶液的初步软XAS测量结果。