Matches in SemOpenAlex for { <https://semopenalex.org/work/W2020151520> ?p ?o ?g. }
- W2020151520 endingPage "798" @default.
- W2020151520 startingPage "791" @default.
- W2020151520 abstract "Atomic layer deposition (ALD) is a subset of chemical vapor deposition (CVD) and both use very similar chemistry. Recently, it has been reported that ALD has the potential to realize a new design paradigm of bioinorganic materials through metal infiltration, which in nature has been employed as a hardening strategy for many tissues in diverse biological organisms. Herein, using a spider dragline silk and a collagen membrane as targets, we have performed a comparative study to elucidate the difference of the metal infiltration effect by ALD and CVD. From the comparison of mechanical properties, concentration of the infiltrated metal, and structural changes induced by the infiltrated metal, it has been proven that the metal can effectively infiltrate biomaterials by ALD and the infiltrated metal leads to highly improved mechanical properties accompanied by substantial changes in the protein structures, whereas CVD is less effective." @default.
- W2020151520 created "2016-06-24" @default.
- W2020151520 creator A5045166023 @default.
- W2020151520 creator A5075553689 @default.
- W2020151520 creator A5079000013 @default.
- W2020151520 date "2011-02-21" @default.
- W2020151520 modified "2023-10-14" @default.
- W2020151520 title "Metal Infiltration into Biomaterials by ALD and CVD: A Comparative Study" @default.
- W2020151520 cites W1548689236 @default.
- W2020151520 cites W1553023626 @default.
- W2020151520 cites W1579363245 @default.
- W2020151520 cites W1969293769 @default.
- W2020151520 cites W1972607938 @default.
- W2020151520 cites W1979221090 @default.
- W2020151520 cites W1980408053 @default.
- W2020151520 cites W1982654979 @default.
- W2020151520 cites W1994463138 @default.
- W2020151520 cites W1995191254 @default.
- W2020151520 cites W2023108847 @default.
- W2020151520 cites W2035066110 @default.
- W2020151520 cites W2055076161 @default.
- W2020151520 cites W2058912578 @default.
- W2020151520 cites W2059805184 @default.
- W2020151520 cites W2066649429 @default.
- W2020151520 cites W2079132764 @default.
- W2020151520 cites W2084632780 @default.
- W2020151520 cites W2091104694 @default.
- W2020151520 cites W2096922307 @default.
- W2020151520 cites W2099885273 @default.
- W2020151520 cites W2102823566 @default.
- W2020151520 cites W2109401564 @default.
- W2020151520 cites W2117243692 @default.
- W2020151520 cites W2119983276 @default.
- W2020151520 cites W2122271644 @default.
- W2020151520 cites W2132504786 @default.
- W2020151520 cites W2145578865 @default.
- W2020151520 cites W2147180866 @default.
- W2020151520 cites W2148871073 @default.
- W2020151520 cites W2161826643 @default.
- W2020151520 cites W2163787276 @default.
- W2020151520 cites W2165137301 @default.
- W2020151520 cites W2470357878 @default.
- W2020151520 cites W4206818003 @default.
- W2020151520 cites W4255473699 @default.
- W2020151520 cites W2030163251 @default.
- W2020151520 doi "https://doi.org/10.1002/cphc.201000923" @default.
- W2020151520 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/21341354" @default.
- W2020151520 hasPublicationYear "2011" @default.
- W2020151520 type Work @default.
- W2020151520 sameAs 2020151520 @default.
- W2020151520 citedByCount "39" @default.
- W2020151520 countsByYear W20201515202012 @default.
- W2020151520 countsByYear W20201515202013 @default.
- W2020151520 countsByYear W20201515202014 @default.
- W2020151520 countsByYear W20201515202015 @default.
- W2020151520 countsByYear W20201515202016 @default.
- W2020151520 countsByYear W20201515202017 @default.
- W2020151520 countsByYear W20201515202018 @default.
- W2020151520 countsByYear W20201515202019 @default.
- W2020151520 countsByYear W20201515202020 @default.
- W2020151520 countsByYear W20201515202021 @default.
- W2020151520 countsByYear W20201515202022 @default.
- W2020151520 countsByYear W20201515202023 @default.
- W2020151520 crossrefType "journal-article" @default.
- W2020151520 hasAuthorship W2020151520A5045166023 @default.
- W2020151520 hasAuthorship W2020151520A5075553689 @default.
- W2020151520 hasAuthorship W2020151520A5079000013 @default.
- W2020151520 hasConcept C127413603 @default.
- W2020151520 hasConcept C153400128 @default.
- W2020151520 hasConcept C159985019 @default.
- W2020151520 hasConcept C167816639 @default.
- W2020151520 hasConcept C171250308 @default.
- W2020151520 hasConcept C178790620 @default.
- W2020151520 hasConcept C185592680 @default.
- W2020151520 hasConcept C19067145 @default.
- W2020151520 hasConcept C192562407 @default.
- W2020151520 hasConcept C42360764 @default.
- W2020151520 hasConcept C544153396 @default.
- W2020151520 hasConcept C57410435 @default.
- W2020151520 hasConcept C69544855 @default.
- W2020151520 hasConceptScore W2020151520C127413603 @default.
- W2020151520 hasConceptScore W2020151520C153400128 @default.
- W2020151520 hasConceptScore W2020151520C159985019 @default.
- W2020151520 hasConceptScore W2020151520C167816639 @default.
- W2020151520 hasConceptScore W2020151520C171250308 @default.
- W2020151520 hasConceptScore W2020151520C178790620 @default.
- W2020151520 hasConceptScore W2020151520C185592680 @default.
- W2020151520 hasConceptScore W2020151520C19067145 @default.
- W2020151520 hasConceptScore W2020151520C192562407 @default.
- W2020151520 hasConceptScore W2020151520C42360764 @default.
- W2020151520 hasConceptScore W2020151520C544153396 @default.
- W2020151520 hasConceptScore W2020151520C57410435 @default.
- W2020151520 hasConceptScore W2020151520C69544855 @default.
- W2020151520 hasIssue "4" @default.
- W2020151520 hasLocation W20201515201 @default.
- W2020151520 hasLocation W20201515202 @default.
- W2020151520 hasOpenAccess W2020151520 @default.
- W2020151520 hasPrimaryLocation W20201515201 @default.