Development of hard X-ray photoelectron spectroscopy in liquid cells using optimized microfabricated silicon nitride membranes

被引:0
作者
Capone, F. [1 ,2 ]
Muntada, O. [3 ]
Ramirez, J. C. [4 ,5 ]
Esplandiu, M. J. [4 ,5 ]
Dedryvere, R. [6 ]
Grimaud, A. [7 ]
Lassalle-Kaiser, B. [1 ]
Ceolin, D. [1 ]
Perez-Murano, F. [3 ]
Rueff, J-P [1 ,8 ]
Fraxedas, Jordi [4 ,5 ]
机构
[1] Synchrotron SOLEIL, F-91190 St Aubin, France
[2] Sorbonne Univ, CNRS, PHENIX, F-75005 Paris, France
[3] Inst Microelect Barcelona IMB CNM CSIC, Campus UAB, Barcelona 08193, Spain
[4] CSIC, Catalan Inst Nanosci & Nanotechnol ICN2, Campus UAB, Barcelona 08193, Spain
[5] BIST, Campus UAB, Barcelona 08193, Spain
[6] Univ Pau & Pays Adour, UPPA E2S, CNRS, IPREM, F-64000 Pau, France
[7] Boston Coll, Merkert Chem Ctr, Dept Chem, Chestnut Hill, MA 02467 USA
[8] Sorbonne Univ, CNRS, LCPMR, F-75005 Paris, France
关键词
hard X-ray photoelectron spectroscopy; silicon nitride membranes; microfabrication; aqueous solutions; nanoparticles; beam damage; synchrotron radiation; ELECTRON-SPECTROSCOPY; GALAXIES BEAMLINE; THIN-FILMS; WATER; PHOTOEMISSION; SCATTERING; SURFACES; REVEALS; SCIENCE;
D O I
10.1107/S1600577524008865
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
We present first hard X-ray photoelectron spectroscopy (HAXPES) results of aqueous salt solutions and dispersions of gold nanoparticles in liquid cells equipped with specially designed microfabricated thin silicon nitride membranes, with thickness in the 15-25 nm range, mounted in a high-vacuum-compatible environment. The experiments have been performed at the HAXPES endstation of the GALAXIES beamline at the SOLEIL synchrotron radiation facility. The low-stress membranes are fabricated from 100 mm silicon wafers using standard lithography techniques. Platinum alignment marks are added to the chips hosting the membranes to facilitate the positioning of the X-ray beam on the membrane by detecting the corresponding photoemission lines. Two types of liquid cells have been used, a static one built on an Omicron-type sample holder with the liquid confined in the cell container, and a circulating liquid cell, in which the liquid can flow in order to mitigate the effects due to beam damage. We demonstrate that the membranes are mechanically robust and able to withstand 1 bar pressure difference between the liquid inside the cell and vacuum, and the intense synchrotron radiation beam during data acquisition. This opens up new opportunities for spectroscopic studies of liquids.
引用
收藏
页码:1505 / 1513
页数:9
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