Printing of In Situ Functionalized Mesoporous Silica with Digital Light Processing for Combinatorial Sensing

Author:

Zhao Lucy1,Spiehl Dieter12,Kohnen Marion C.1,Ceolin Marcelo3,Mikolei Joanna J.1,Pardehkhorram Raheleh1,Andrieu‐Brunsen Annette1ORCID

Affiliation:

1. Ernst‐Berl Institut für Technische und Makromolekulare Chemie Makromolekulare Chemie – Smart Membranes Peter‐Grünberg‐Str. 8 D‐64287 Darmstadt Germany

2. Institut für Druckmaschinen und Druckverfahren – IDD Technische Universität Darmstadt Magdalenenstr. 2 D‐64289 Darmstadt Germany

3. Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas Universidad Nacional de La Plata and CONICET Diag. 113 y 64 La Plata B1900 Argentina

Abstract

AbstractCombinatorial sensing is especially important in the context of modern drug development to enable fast screening of large data sets. Mesoporous silica materials offer high surface area and a wide range of functionalization possibilities. By adding structural control, the combination of structural and functional control along all length scales opens a new pathway that permits larger amounts of analytes being tested simultaneously for complex sensing tasks. This study presents a fast and simple way to produce mesoporous silica in various shapes and sizes between 0.27–6 mm by using light‐induced sol‐gel chemistry and digital light processing (DLP). Shape‐selective functionalization of mesoporous silica is successfully carried out either after printing using organosilanes or in situ while printing through the use of functional mesopore template for the in situ functionalization approach. Shape‐selective adsorption of dyes is shown as a demonstrator toward shape selective screening of potential analytes.

Funder

European Research Council

H2020 European Research Council

Publisher

Wiley

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