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Precision epitaxy for aqueous 1D and 2D poly(ε-caprolactone) assemblies
Maria C. Arno
, Maria Inam
, Zachary Coe
, Graeme Cambridge
, Laura J. Macdougall
, Robert Keogh
,
Andrew P. Dove
,
Rachel K. O'Reilly
Chemistry
Research output
:
Contribution to journal
›
Article
›
peer-review
86
Citations (Scopus)
248
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Keyphrases
Epitaxial Growth
100%
Epitaxy
100%
Polycaprolactone
100%
Nanostructures
66%
Aqueous Solvent
66%
Alcohol Solvents
66%
Platelets
33%
Materials Science
33%
Monodisperse
33%
Size Control
33%
Cell Viability
33%
A549 Cells
33%
Cell Culture Media
33%
Biologically Relevant
33%
Biocompatibility
33%
Precision Control
33%
Biological Applications
33%
Water Solvent
33%
Biomedical Applications
33%
High Cell Viability
33%
Dispersibility
33%
Hydrogel Material
33%
MC3T3
33%
Functional Regions
33%
Unimers
33%
1D Nanostructures
33%
Crystallization-driven Self-assembly
33%
High-strength Hydrogels
33%
Fluorescent Hydrogel
33%
Aqueous Cells
33%
Uniform Morphology
33%
Biocompatible Hydrogel
33%
Seed Ratios
33%
Controlled Morphology
33%
Material Science
Epitaxy
100%
Nanostructure
75%
Hydrogel
50%
Platelet
25%
Self Assembly
25%
Micelle
25%