From spinodal decomposition to alternating layered structure within single crystals of biogenic magnesium calcite E Seknazi, S Kozachkevich, I Polishchuk, NB Stein, J Villanova, ... Nature communications 10 (1), 1-9, 2019 | 41 | 2019 |
High-Mg calcite nanoparticles within a low-Mg calcite matrix: A widespread phenomenon in biomineralization N Bianco-Stein, I Polishchuk, A Lang, L Portal, C Dejoie, A Katsman, ... Proceedings of the National Academy of Sciences 119 (16), e2120177119, 2022 | 25 | 2022 |
Strong Band Gap Blueshift in Copper (I) Oxide Semiconductor via Bioinspired Route I Polishchuk, N Bianco‐Stein, A Lang, M Kurashvili, M Caspary Toroker, ... Advanced Functional Materials 30 (13), 1910405, 2020 | 19 | 2020 |
Helical microstructures of the mineralized coralline red algae determine their mechanical properties N Bianco‐Stein, I Polishchuk, G Seiden, J Villanova, A Rack, P Zaslansky, ... Advanced Science 7 (11), 2000108, 2020 | 18 | 2020 |
Structural and chemical variations in Mg-calcite skeletal segments of coralline red algae lead to improved crack resistance N Bianco-Stein, I Polishchuk, A Lang, G Atiya, J Villanova, P Zaslansky, ... Acta Biomaterialia 130, 362-373, 2021 | 10 | 2021 |
Mg-rich nanoparticles within Mg-poor calcite matrices: from coralline red algae to a widespread phenomenon in biomineralization I Polishchuk, N Bianco-Stein, B Pokroy Acta Crystallographica Section A: Foundations and Advances 78, a122-a123, 2022 | | 2022 |
Structure and properties of coralline red alga: from helical configuration to alternating layers N Bianco-Stein, I Polishchuk, P Zaslansky, A Katsman, B Pokroy Acta Cryst 77, C411, 2021 | | 2021 |
1Technion-Haifa (Israel) I Polishchuk, N Bianco-Stein, B Pokroy Foundations of Crystallography, 0 | | |
Structural and Chemical Variations in the Skeletal Segments of Coralline Red Algae Lead to Improved Crack Resistance N Bianco-Stein, I Polishchuk, A Lang, G Atiya, J Villanova, P Zaslansky, ... Available at SSRN 3790077, 0 | | |