4.5 Article

Microfluidic polyimide gas dynamic virtual nozzles for serial crystallography

期刊

REVIEW OF SCIENTIFIC INSTRUMENTS
卷 91, 期 8, 页码 -

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AMER INST PHYSICS
DOI: 10.1063/5.0012806

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资金

  1. Joachim-Herz-Stiftung
  2. excellence cluster The Hamburg Center for Ultrafast Imaging-Structure, Dynamics and Control of Matter at the Atomic Scale of the Deutsche Forschungsgemeinschaft (CUI) [DFG EXC1074]

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Free liquid jets are a common sample delivery method in serial femtosecond x-ray (SFX) crystallography. Gas dynamic virtual nozzles (GDVNs) use an outer gas stream to focus a liquid jet down to a few micrometers in diameter. Such nozzles can be fabricated through various methods (capillary grinding, soft lithography, digital light processing, and two-photon polymerization) and materials, such as glass, polydimethylsiloxane, and photosensitive polyacrylates. Here, we present a broadly accessible, rapid prototyping laser ablation approach to micromachine solvent-resistant and inert Kapton polyimide foils with highly reproducible geometric features that result in 3D flow-focused GDVNs suitable for crystallography experiments at synchrotrons and free-electron laser facilities.

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