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Use of cryogenic machining to improve the adhesion of sphene bioceramic coatings on titanium substrates for dental and orthopaedic applications, , , , und . Ceramics International, 45 (5): 5941--5951 (2019)cited By 11.Biosilicate® Glass-Ceramic Foams From Refined Alkali Activation and Gel Casting, , , , , und . Frontiers in Materials, (2021)cited By 9.Direct ink writing of porous titanium (Ti6Al4V)lattice structures, , , , , , , und . Materials Science and Engineering C, (2019)cited By 45.Robocasting of advanced ceramics: ink optimization and protocol to predict the printing parameters - A review, , , , , und . Heliyon, (2022)cited By 6.Upcycling of Pharmaceutical Glass into Highly Porous Ceramics: From Foams to Membranes, , , , , und . Materials, (2022)cited By 0.Double-life sustainable construction materials from alkali activation of volcanic ash/discarded glass mixture, , , , , und . Construction and Building Materials, (2022)cited By 1.Silicone resins mixed with active oxide fillers and Ca-Mg Silicate glass as alternative/integrative precursors for wollastonite-diopside glass-ceramic foams, , , , und . Journal of Non-Crystalline Solids, (2015)cited By 34.Highly porous mullite ceramics from engineered alkali activated suspensions, , und . Journal of the American Ceramic Society, 101 (3): 1036--1041 (2018)cited By 28.Enhanced electromagnetic microwave absorption of SiOC ceramics targeting the integration of structure and function, , , , , , und . Journal of the European Ceramic Society, 41 (13): 6393--6405 (2021)cited By 25.Direct ink writing of silica-bonded calcite scaffolds from preceramic polymers and fillers, , , , , , , , und . Biofabrication, (2017)cited By 27.