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Collagen-inspired self-assembling materals
P.J. Skrzeszewska
VLAG
Research output
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Thesis
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internal PhD, WU
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Engineering
Storage Modulus
100%
Melting Point
66%
Relaxation Time
66%
Melting Temperature
50%
Radius of Gyration
50%
Nodes
33%
Fluid Viscosity
33%
Analytical Model
33%
Molar Concentration
33%
Physicochemical Property
33%
Melting Behavior
33%
Multiplicity
33%
Biopolymer
33%
Protein Concentration
16%
Rheology
16%
Input Parameter
16%
Engineering
16%
Internal Structure
16%
Kinetic Model
16%
Hydrogel
16%
Good Agreement
16%
Fermentation Broth
16%
Concentrated Solution
16%
Limiting Step
16%
Gelation
16%
Elastic Response
16%
Low-Temperature
16%
Equilibrium State
16%
Biomedical Application
16%
Artificial Fragment
16%
Acid Composition
16%
Molecular Design
16%
Synthetic Material
16%
Junction Formation
16%
Synthetic Polymer
16%
Schematic Representation
16%
Reaction Order
16%
Biochemistry, Genetics and Molecular Biology
Triple Helix
100%
Solution and Solubility
44%
Peptide Sequence
33%
Conformation
33%
Melting Point
33%
Melting Temperature
33%
Amino Acids
22%
Biopolymer
22%
Enthalpy
22%
Differential Scanning Calorimetry
22%
Komagataella pastoris
22%
Chemical Structure
11%
Molecular Biology
11%
Thermostability
11%
Molecular Size
11%
Expression Cassette
11%
Medical Biology
11%
Recombinant DNA Technology
11%
Rigidity
11%
Amino Acid Composition
11%
Flow Kinetics
11%
Biodegradability
11%
Gelation
11%
Elastin
11%
Prion Protein
11%
Genetic Engineering
11%
Material Science
Elastic Moduli
100%
Amino Acids
100%
Elastic Property
33%
Differential Scanning Calorimetry
33%
Nucleation
33%
Biopolymer
33%
Hydrogel
16%
Copolymer
16%
Block Copolymer
16%
Rheology
16%
Synthetic Polymer
16%
Elasticity
16%
Theoretical Calculation
16%
Thermal Stability
16%
Natural Polymer
16%
Molecular Structure
16%
Biocompatibility
16%
Elastin
16%