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Plasma polymerised poly(methyl methacrylate) and cyclopropylamine films on polylactic acid nanofibres by electrospinning
Chuan Li
*
, J. H. Hsieh, H. Y. Wang
*
此作品的通信作者
生物醫學工程學系
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引文 斯高帕斯(Scopus)
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Engineering & Materials Science
3D printers
6%
Acids
57%
Adhesion
5%
Amines
7%
Assays
7%
Benzene
7%
Biocompatibility
7%
Biodegradability
8%
Casting
5%
Catalysts
5%
Cell culture
24%
Cell proliferation
9%
Cells
6%
Chemical properties
7%
Coatings
4%
DNA
6%
Electrospinning
85%
Energy dispersive spectroscopy
6%
Esters
6%
Extrusion
6%
Fabrication
4%
Fibers
12%
Fibroblasts
18%
Geometry
3%
Injection molding
6%
Lactic acid
8%
Metals
4%
Molecules
6%
Monomers
7%
Nanofibers
82%
Natural resources
7%
Physical properties
5%
Plasma polymerization
12%
Plasmas
58%
Polyesters
6%
Polymers
4%
Polymethyl methacrylates
83%
Porosity
5%
Scanning electron microscopy
4%
Signal transduction
9%
Solubility
6%
Starch
15%
Thermoplastics
12%
Physics & Astronomy
acids
56%
adhesion
5%
amines
7%
atomic force microscopy
4%
benzene
6%
biocompatibility
7%
biodegradability
10%
catalysts
5%
chemical properties
6%
coatings
4%
corn
9%
cultured cells
7%
deoxyribonucleic acid
5%
dissolving
5%
esters
7%
fabrication
3%
fibers
10%
fibroblasts
15%
geometry
3%
injection molding
7%
lactic acid
8%
metals
3%
mice
6%
molecules
3%
monomers
5%
physical properties
4%
polyesters
7%
polymerization
5%
polymers
3%
polymethyl methacrylate
65%
porosity
4%
printing
6%
resources
6%
scanning electron microscopy
4%
solubility
5%
starches
16%
tetrahydrofuran
8%
Chemical Compounds
Application
1%
Benzene
4%
Biodegradability
6%
Casting
5%
Coating Agent
3%
Cyclopropylamine
100%
Diester
6%
Dioxane
6%
Extrusion
6%
Fiber
12%
Liquid Film
30%
Molecule
2%
Monomer
3%
Nanofiber
54%
Plasma
39%
Plasma Polymerization
8%
Polyester
5%
Porosity
3%
Primary Amine
6%
Signal Transduction
6%
Solubility
3%
Solvent
2%
Starch
11%
Suspension
4%