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Science (New York, N.Y.)|February 19, 2011
Capillary forces in suspension rheologyErin Koos, Norbert WillenbacherScientific Reports|August 11, 2016
Highly conductive, printable pastes from capillary suspensionsMonica Schneider, Erin Koos, Norbert WillenbacherRheologica Acta|March 3, 2015
Restructuring and aging in a capillary suspensionErin Koos, Wolfgang Kannowade, Norbert WillenbacherColloid and Polymer Science|March 6, 2018
Radical polymerization of capillary bridges between micron-sized particles in liquid bulk phase as a low temperature route to produce porous solid materialsKatharina Hauf, Kamran Riazi, Norbert Willenbacher, et al.Materials (Basel, Switzerland)|February 23, 2019
Lightweight Porous Glass Composite Materials Based on Capillary SuspensionsKatharina Hartung, Carolyn Benner, Norbert Willenbacher, et al.Journal of Rheology|March 6, 2018
Fractal approaches to characterize the structure of capillary suspensions using rheology and confocal microscopyFrank Bossler, Johannes Maurath, Katrin Dyhr, et al.ACS Applied Materials & Interfaces|March 7, 2017
Suppressing Crack Formation in Particulate Systems by Utilizing Capillary ForcesMonica Schneider, Johannes Maurath, Steffen B Fischer, et al.Advanced Materials (Deerfield Beach, Fla.)|February 17, 2022
Phase-Change-Enabled, Rapid, High-Resolution Direct Ink Writing of Soft SiliconeYiliang Wang, Norbert WillenbacherJournal of Visualized Experiments : Jove|April 28, 2017
Challenges in Rheological Characterization of Highly Concentrated Suspensions - A Case Study for Screen-printing Silver PastesCeren Yüce, Norbert WillenbacherSoft Matter|March 15, 2021
Shear modulus and yield stress of foams: contribution of interfacial elasticityAnnika R Völp, Norbert WillenbacherPageof 8