A novel biomimetic approach to the design of high-performance ceramic-metal composites

scientific article

A novel biomimetic approach to the design of high-performance ceramic-metal composites is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1098/RSIF.2009.0331
P932PMC publication ID2874234
P698PubMed publication ID19828498
P5875ResearchGate publication ID38010977

P2093author name stringRobert O Ritchie
Eduardo Saiz
Antoni P Tomsia
Maximilien E Launey
Etienne Munch
Daan Hein Alsem
P2860cites workSelf-assembly and mineralization of peptide-amphiphile nanofibersQ34103088
Nanostructured artificial nacre.Q34199580
Rigid biological systems as models for synthetic compositesQ34468500
Ultrastrong and stiff layered polymer nanocompositesQ34698740
Mechanical strength of abalone nacre: role of the soft organic layerQ34993685
Materials science: synthetic sea shellQ44491836
Tough, bio-inspired hybrid materialsQ46213796
Freezing as a path to build complex compositesQ46913721
Materials science. Bioinspired structural materialsQ47896994
The Mechanical Design of NacreQ55893923
Structural basis for the fracture toughness of the shell of the conch Strombus gigasQ57223513
Bioinspired design and assembly of platelet reinforced polymer filmsQ80751857
P433issue46
P921main subjectbiomimeticsQ1145644
P1104number of pages13
P304page(s)741-753
P577publication date2009-10-14
P1433published inJournal of the Royal Society InterfaceQ2492390
P1476titleA novel biomimetic approach to the design of high-performance ceramic-metal composites
P478volume7