Matthew J. Olszta, Ph.D.
Affiliations: | 2004 | University of Florida, Gainesville, Gainesville, FL, United States |
Area:
Materials Science EngineeringGoogle:
"Matthew Olszta"Mean distance: (not calculated yet)
Parents
Sign in to add mentorLaurie Gower | grad student | 2004 | UF Gainesville | |
(A new paradigm for biomineral formation: Mineralization via an amorphous liquid-phase precursor process.) |
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Publications
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Fiedler K, Olszta M. (2020) NanoCartography: Mathematics of Crystal Orientation in Double Tilt Holders Microscopy and Microanalysis. 1-2 |
Homeijer SJ, Olszta MJ, Barrett RA, et al. (2008) Growth of nanofibrous barium carbonate on calcium carbonate seeds Journal of Crystal Growth. 310: 2938-2945 |
Olszta M, Sloppy J, Li J, et al. (2007) Field-Induced Crystallization of Anodized Nb and NbO Electrolytic Capacitors Microscopy and Microanalysis. 13 |
Olszta MJ, Cheng X, Jee SS, et al. (2007) Bone structure and formation: A new perspective Materials Science and Engineering: R: Reports. 58: 77-116 |
Cheng X, Varona PL, Olszta MJ, et al. (2007) Biomimetic synthesis of calcite films by a polymer-induced liquid-precursor (PILP) process. 1. Influence and incorporation of magnesium Journal of Crystal Growth. 307: 395-404 |
Amos FF, Olszta MJ, Khan SR, et al. (2007) Relevance of a Polymer-Induced Liquid-Precursor (PILP) Mineralization Process to Normal and Pathological Biomineralization Biomineralization - Medical Aspects of Solubility. 125-217 |
DiMasi E, Kwak SY, Amos FF, et al. (2006) Complementary control by additives of the kinetics of amorphous CaCO3 mineralization at an organic interface: in-situ synchrotron x-ray observations. Physical Review Letters. 97: 045503 |
Olszta M, Sloppy J, Wang J, et al. (2006) TEM and EELS analysis of anodized Nb2O5: Stoichiometry and field-induced crystallization Microscopy and Microanalysis. 12: 1194-1195 |
Olszta MJ, Gajjeraman S, Kaufman M, et al. (2004) Nanofibrous calcite synthesized via a solution-precursor-solid mechanism Chemistry of Materials. 16: 2355-2362 |
Olszta MJ, Odom DJ, Douglas EP, et al. (2003) A new paradigm for biomineral formation: mineralization via an amorphous liquid-phase precursor. Connective Tissue Research. 44: 326-34 |