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Data underlying the publication: Microgel-based etalon membranes: characterization and properties

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DataCite Commons2025-08-11 更新2025-09-06 收录
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https://data.4tu.nl/datasets/b0a3b4bd-1764-4b2b-9db1-edd2945edb41/1
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We introduce Microgel-based Etalon Membranes (MEM), based on the combination of stimuli-responsive microgelswith an etalon, which is an optical device consisting of two reflecting plates and is used to filter specific wavelengthsof light. The microgels are sandwiched between two reflective layers and, in response to a stimulus (e.g., temperature,pH, or biomarker concentration) swell or de-swell, thereby changing the distance between the two reflective layers, andgenerating multiple peaks in the reflectance spectra. This property gives a MEM the unique capability of simultaneousseparation and tunable responses to the environmental changes and/or biomarker concentrations. We propose a designbased on gold layers on a silicon nitride wafer membrane. Our comprehensive characterization, employing perme-ability experiments, in-situ optical reflectance spectroscopy, in-liquid AFM analysis, and captive bubble contact anglemeasurements, elucidates the dynamic response of MEM to pH, temperature, and glucose stimuli and the correspond-ing effect of microgel swelling/de-swelling on the membrane properties, e.g., permeability. The AFM results confirmthe dynamic changes of the microgel layer’s thickness on the membrane surface in response to the stimuli. Althoughthe microgel’s swelling/deswelling influences the effective pore radius, the decrease in the membrane’s permeance islimited to less than 10%. In the swollen state of the microgels, the etalon membranes show a prominent hydrophilicbehavior, while they become less hydrophilic in the microgels’ de-swollen state
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4TU.ResearchData
创建时间:
2025-08-11
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