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Abstract
To advance microfluidic integration, we present the use of two-photon additive manufacturing to fold 2D channel layouts into compact free-form 3D fluidic circuits with nanometer precision. We demonstrate this technique by tailoring microfluidic nozzles and mixers for time-resolved structural biology at X-ray free-electron lasers (XFELs). We achieve submicron jets with speeds exceeding 160 m s−1, which allows for the use of megahertz XFEL repetition rates. By integrating an additional orifice, we implement a low consumption flow-focusing nozzle, which is validated by solving a hemoglobin structure. Also, aberration-free in operando X-ray microtomography is introduced to study efficient equivolumetric millisecond mixing in channels with 3D features integrated into the nozzle. Such devices can be printed in minutes by locally adjusting print resolution during fabrication. This technology has the potential to permit ultracompact devices and performance improvements through 3D flow optimization in all fields of microfluidic engineering.
There is a need for more robust sample delivery methods for serial crystallography. Here the authors present the design and characterization of ultracompact 3D microfluidic devices that can be printed, which require less sample, have a lower background signal and allow 3D mixing for time resolved experiments.
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1 Deutsches Elektronen-Synchrotron DESY, CFEL, Center for Free-Electron Laser Science, Hamburg, Germany (GRID:grid.7683.a) (ISNI:0000 0004 0492 0453); Universität Hamburg, Department of Physics, Hamburg, Germany (GRID:grid.9026.d) (ISNI:0000 0001 2287 2617)
2 Deutsches Elektronen-Synchrotron, DESY, Hamburg, Germany (GRID:grid.7683.a) (ISNI:0000 0004 0492 0453); EuXFEL, Sample Environment & Characterization Group, Schenefeld, Germany (GRID:grid.7683.a)
3 Deutsches Elektronen-Synchrotron DESY, CFEL, Center for Free-Electron Laser Science, Hamburg, Germany (GRID:grid.7683.a) (ISNI:0000 0004 0492 0453); Universität Hamburg, CUI, Center for Ultrafast Imaging, Hamburg, Germany (GRID:grid.9026.d) (ISNI:0000 0001 2287 2617)
4 Deutsches Elektronen-Synchrotron DESY, CFEL, Center for Free-Electron Laser Science, Hamburg, Germany (GRID:grid.7683.a) (ISNI:0000 0004 0492 0453); Max Planck Institute for the Structure and Dynamics of Matter, Hamburg, Germany (GRID:grid.469852.4) (ISNI:0000 0004 1796 3508)
5 Deutsches Elektronen-Synchrotron DESY, CFEL, Center for Free-Electron Laser Science, Hamburg, Germany (GRID:grid.7683.a) (ISNI:0000 0004 0492 0453)
6 Deutsches Elektronen-Synchrotron DESY, CFEL, Center for Free-Electron Laser Science, Hamburg, Germany (GRID:grid.7683.a) (ISNI:0000 0004 0492 0453); Lund University, Synchrotron Radiation Research, Lund, Sweden (GRID:grid.4514.4) (ISNI:0000 0001 0930 2361)
7 Institut für Werkstoffforschung, Helmholtz-Zentrum Geesthacht, Geesthacht, Germany (GRID:grid.9026.d)
8 Deutsches Elektronen-Synchrotron, DESY, Hamburg, Germany (GRID:grid.7683.a) (ISNI:0000 0004 0492 0453)
9 Deutsches Elektronen-Synchrotron DESY, CFEL, Center for Free-Electron Laser Science, Hamburg, Germany (GRID:grid.7683.a) (ISNI:0000 0004 0492 0453); Universität Hamburg, Department of Physics, Hamburg, Germany (GRID:grid.9026.d) (ISNI:0000 0001 2287 2617); Universität Hamburg, CUI, Center for Ultrafast Imaging, Hamburg, Germany (GRID:grid.9026.d) (ISNI:0000 0001 2287 2617)
10 Deutsches Elektronen-Synchrotron DESY, CFEL, Center for Free-Electron Laser Science, Hamburg, Germany (GRID:grid.7683.a) (ISNI:0000 0004 0492 0453); Universität Stuttgart, IBBS, Institut für Biomaterialien und Biomolekulare Systeme, Stuttgart, Germany (GRID:grid.5719.a) (ISNI:0000 0004 1936 9713)