Thinner than a knife's edge: 3D-printed liquid sheet jet technology for solution phase XFEL experiments

In this commentary, we explore the pioneering implementation of 3D-printed thin liquid sheet devices for advanced X-ray scattering and spectroscopy experiments at high-repetition rate XFELs.

Bibliographic Details
Published in:IUCrJ
Main Author: Martin Trebbin
Format: Article
Language:English
Published: International Union of Crystallography 2023-11-01
Subjects:
Online Access:http://scripts.iucr.org/cgi-bin/paper?S2052252523009429
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author Martin Trebbin
author_facet Martin Trebbin
author_sort Martin Trebbin
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description In this commentary, we explore the pioneering implementation of 3D-printed thin liquid sheet devices for advanced X-ray scattering and spectroscopy experiments at high-repetition rate XFELs.
format Article
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spelling doaj-art-059018878c3649b993345db2023ea2c72025-08-19T22:53:19ZengInternational Union of CrystallographyIUCrJ2052-25252023-11-0110663864110.1107/S2052252523009429me6252Thinner than a knife's edge: 3D-printed liquid sheet jet technology for solution phase XFEL experimentsMartin Trebbin0University at Buffalo, Department of Chemistry & Research and Education in eNergy, Environment and Water (RENEW), 760 Natural Sciences Complex, Buffalo, NY 14260, USAIn this commentary, we explore the pioneering implementation of 3D-printed thin liquid sheet devices for advanced X-ray scattering and spectroscopy experiments at high-repetition rate XFELs.http://scripts.iucr.org/cgi-bin/paper?S2052252523009429free-electron lasersxfelssample deliveryliquid sheetssolution phasex-ray scattering
spellingShingle Martin Trebbin
Thinner than a knife's edge: 3D-printed liquid sheet jet technology for solution phase XFEL experiments
free-electron lasers
xfels
sample delivery
liquid sheets
solution phase
x-ray scattering
title Thinner than a knife's edge: 3D-printed liquid sheet jet technology for solution phase XFEL experiments
title_full Thinner than a knife's edge: 3D-printed liquid sheet jet technology for solution phase XFEL experiments
title_fullStr Thinner than a knife's edge: 3D-printed liquid sheet jet technology for solution phase XFEL experiments
title_full_unstemmed Thinner than a knife's edge: 3D-printed liquid sheet jet technology for solution phase XFEL experiments
title_short Thinner than a knife's edge: 3D-printed liquid sheet jet technology for solution phase XFEL experiments
title_sort thinner than a knife s edge 3d printed liquid sheet jet technology for solution phase xfel experiments
topic free-electron lasers
xfels
sample delivery
liquid sheets
solution phase
x-ray scattering
url http://scripts.iucr.org/cgi-bin/paper?S2052252523009429
work_keys_str_mv AT martintrebbin thinnerthanaknifesedge3dprintedliquidsheetjettechnologyforsolutionphasexfelexperiments