Total morphosynthesis of biomimetic prismatic-type CaCO3 thin films

10.1038/s41467-017-01719-6

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Main Authors: Xiao, C, Li, M, Wang, B, Liu, M.-F, Shao, C, Pan, H, Lu, Y, Xu, B.-B, Li, S, Zhan, D, Jiang, Y, Tang, R, Liu, X.Y, Cölfen, H
Other Authors: DEPT OF PHYSICS
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Published: Nature Publishing Group 2020
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Online Access:https://scholarbank.nus.edu.sg/handle/10635/178559
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spelling sg-nus-scholar.10635-1785592023-08-27T22:31:48Z Total morphosynthesis of biomimetic prismatic-type CaCO3 thin films Xiao, C Li, M Wang, B Liu, M.-F Shao, C Pan, H Lu, Y Xu, B.-B Li, S Zhan, D Jiang, Y Tang, R Liu, X.Y Cölfen, H DEPT OF PHYSICS biomaterial calcium carbonate mineral silk fibroin additive biomineralization calcium carbonate coating composite film hardness polymer stiffness Young modulus animal shell Article biomimetics chemical phenomena hardness mineralization nanofabrication scanning electron microscopy structure analysis superoleophobicity synthesis thickness transmission electron microscopy X ray diffraction Young modulus 10.1038/s41467-017-01719-6 Nature Communications 8 1 1398 2020-10-20T10:19:10Z 2020-10-20T10:19:10Z 2017 Article Xiao, C, Li, M, Wang, B, Liu, M.-F, Shao, C, Pan, H, Lu, Y, Xu, B.-B, Li, S, Zhan, D, Jiang, Y, Tang, R, Liu, X.Y, Cölfen, H (2017). Total morphosynthesis of biomimetic prismatic-type CaCO3 thin films. Nature Communications 8 (1) : 1398. ScholarBank@NUS Repository. https://doi.org/10.1038/s41467-017-01719-6 2041-1723 https://scholarbank.nus.edu.sg/handle/10635/178559 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Nature Publishing Group Unpaywall 20201031
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic biomaterial
calcium carbonate
mineral
silk fibroin
additive
biomineralization
calcium carbonate
coating
composite
film
hardness
polymer
stiffness
Young modulus
animal shell
Article
biomimetics
chemical phenomena
hardness
mineralization
nanofabrication
scanning electron microscopy
structure analysis
superoleophobicity
synthesis
thickness
transmission electron microscopy
X ray diffraction
Young modulus
spellingShingle biomaterial
calcium carbonate
mineral
silk fibroin
additive
biomineralization
calcium carbonate
coating
composite
film
hardness
polymer
stiffness
Young modulus
animal shell
Article
biomimetics
chemical phenomena
hardness
mineralization
nanofabrication
scanning electron microscopy
structure analysis
superoleophobicity
synthesis
thickness
transmission electron microscopy
X ray diffraction
Young modulus
Xiao, C
Li, M
Wang, B
Liu, M.-F
Shao, C
Pan, H
Lu, Y
Xu, B.-B
Li, S
Zhan, D
Jiang, Y
Tang, R
Liu, X.Y
Cölfen, H
Total morphosynthesis of biomimetic prismatic-type CaCO3 thin films
description 10.1038/s41467-017-01719-6
author2 DEPT OF PHYSICS
author_facet DEPT OF PHYSICS
Xiao, C
Li, M
Wang, B
Liu, M.-F
Shao, C
Pan, H
Lu, Y
Xu, B.-B
Li, S
Zhan, D
Jiang, Y
Tang, R
Liu, X.Y
Cölfen, H
format Article
author Xiao, C
Li, M
Wang, B
Liu, M.-F
Shao, C
Pan, H
Lu, Y
Xu, B.-B
Li, S
Zhan, D
Jiang, Y
Tang, R
Liu, X.Y
Cölfen, H
author_sort Xiao, C
title Total morphosynthesis of biomimetic prismatic-type CaCO3 thin films
title_short Total morphosynthesis of biomimetic prismatic-type CaCO3 thin films
title_full Total morphosynthesis of biomimetic prismatic-type CaCO3 thin films
title_fullStr Total morphosynthesis of biomimetic prismatic-type CaCO3 thin films
title_full_unstemmed Total morphosynthesis of biomimetic prismatic-type CaCO3 thin films
title_sort total morphosynthesis of biomimetic prismatic-type caco3 thin films
publisher Nature Publishing Group
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/178559
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