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Development of bioactive silicate-based glass-ceramics from preceramic polymer and fillers, , , , , and . Journal of the European Ceramic Society, 35 (2): 731--739 (2015)cited By 32.Facile ceramic micro-structure generation using electrohydrodynamic processing and pyrolysis, , , , , , and . Ceramic Transactions, (2010)cited By 0.Inertization and reuse of waste materials by vitrification and fabrication of glass-based products, , , and . Current Opinion in Solid State and Materials Science, 7 (3): 225--239 (2003)cited By 235.Electrospun SiOC ceramic fiber mats as freestanding electrodes for electrochemical energy storage applications, , , , , and . Ceramics International, 46 (3): 3565--3573 (2020)cited By 31.Lattice-shaped geopolymer catalyst for biodiesel synthesis fabricated by additive manufacturing, , , , , , and . Ceramics International, 45 (1): 1443--1446 (2019)cited By 28.Porous wollastonite-hydroxyapatite bioceramics from a preceramic polymer and micro- or nano-sized fillers, , , , , , , , and . Journal of the European Ceramic Society, 32 (2): 399--408 (2012)cited By 28.Advanced oxide ceramics from a preceramic polymer and fillers, and . Soft Materials, 4 (2-4): 175--185 (2006)cited By 9.Novel 3D wollastonite-based scaffolds from preceramic polymers containing micro- and nano-sized reactive particles, , , , and . Advanced Engineering Materials, 14 (4): 269--274 (2012)cited By 28.Novel mullite synthesis based on alumina nanoparticles and a preceramic polymer, , , and . Journal of the American Ceramic Society, 89 (5): 1577--1583 (2006)cited By 49.Kinetic studies of mullite synthesis from alumina nanoparticles and a preceramic polymer, , , and . Journal of the American Ceramic Society, 91 (8): 2529--2533 (2008)cited By 44.