4.8 Article

Coherently aligned nanoparticles within a biogenic single crystal: A biological prestressing strategy

Journal

SCIENCE
Volume 358, Issue 6368, Pages 1294-1298

Publisher

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.aaj2156

Keywords

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Funding

  1. Alon Fellowship for Outstanding Young Researchers of the Israeli Council for Higher Education
  2. RBNI Technion
  3. European Commission H under the Graphene Flagship Core 1 [696656, WP14]
  4. European Commission under the Future and Emerging Technologies Proactive Neurofibres [732344]
  5. Fondazione Caritro under Self-Cleaning Glasses [2016.0278]
  6. NSF [DMR-1603192]
  7. U.S. Department of Energy (DOE) [DE-FG02-07ER15899]
  8. [DE-AC02-05CH11231]
  9. Division Of Materials Research
  10. Direct For Mathematical & Physical Scien [1603192] Funding Source: National Science Foundation

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In contrast to synthetic materials, materials produced by organisms are formed in ambient conditions and with a limited selection of elements. Nevertheless, living organisms reveal elegant strategies for achieving specific functions, ranging from skeletal support to mastication, from sensors and defensive tools to optical function. Using state-of-the-art characterization techniques, we present a biostrategy for strengthening and toughening the otherwise brittle calcite optical lenses found in the brittlestar Ophiocoma wendtii. This intriguing process uses coherent nanoprecipitates to induce compressive stresses on the host matrix, functionally resembling the Guinier-Preston zones known in classical metallurgy. We believe that these calcitic nanoparticles, being rich inmagnesium, segregate during or just after transformation from amorphous to crystalline phase, similarly to segregation behavior from a supersaturated quenched alloy.

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