Issue 7, 2022

Sub-micron thick liquid sheets produced by isotropically etched glass nozzles

Abstract

We report on the design and testing of glass nozzles used to produce liquid sheets. The sheet nozzles use a single converging channel chemically etched into glass wafers by standard lithographic methods. Operation in ambient air and vacuum was demonstrated. The measured sheet thickness ranges over one order of magnitude with the smallest thickness of 250 nm and the largest of 2.5 μm. Sheet thickness was shown to be independent of liquid flow rate, and dependent on the nozzle outlet area. Sheet surface roughness was dependent on nozzle surface finish and was on the order of 10 nm for polished nozzles. Electron transmission data is presented for various sheet thicknesses near the MeV mean free path and the charge pair distribution function for D2O is determined from electron scattering data.

Graphical abstract: Sub-micron thick liquid sheets produced by isotropically etched glass nozzles

Supplementary files

Article information

Article type
Paper
Submitted
25 Aug 2021
Accepted
10 Jan 2022
First published
16 Feb 2022
This article is Open Access
Creative Commons BY license

Lab Chip, 2022,22, 1365-1373

Sub-micron thick liquid sheets produced by isotropically etched glass nozzles

C. J. Crissman, M. Mo, Z. Chen, J. Yang, D. A. Huyke, S. H. Glenzer, K. Ledbetter, J. P. F. Nunes, M. L. Ng, H. Wang, X. Shen, X. Wang and D. P. DePonte, Lab Chip, 2022, 22, 1365 DOI: 10.1039/D1LC00757B

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