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Phase behaviour and complex coacervation of aqueous polypeptide solutions
Dimitrios Priftis,
Matthew Tirrell
Research output
:
Contribution to journal
›
Article
›
peer-review
315
Scopus citations
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Dive into the research topics of 'Phase behaviour and complex coacervation of aqueous polypeptide solutions'. Together they form a unique fingerprint.
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Keyphrases
Phase Behavior
100%
Polypeptide
100%
Complex Coacervation
100%
Coacervate
75%
Phase Diagram
50%
Stoichiometry
50%
Complex Formation
50%
Salt Concentration
50%
Lysine
25%
Phase Separation
25%
Water Content
25%
Polyelectrolyte
25%
Turbidity
25%
Polycation
25%
Polyanion
25%
Aqueous Solution
25%
Polymer Concentration
25%
Ionic Strength
25%
Chain Length
25%
Mixing Ratio
25%
Glutamic Acid
25%
Charged Groups
25%
Oppositely Charged Polyelectrolytes
25%
Optical Microscopy
25%
Molecular Weight Effect
25%
Attractive Model
25%
Salt Content
25%
Acid System
25%
Polyelectrolyte Complex
25%
Critical Salt Concentration
25%
Coacervate Phase
25%
PolyBase
25%
Chemistry
Phase Behavior
100%
Coacervation
100%
Polypeptide
100%
Complex Formation
75%
Reaction Stoichiometry
50%
Phase Diagrams
50%
Optical Microscopy
25%
Molecular Mass
25%
Polycationic Polymer
25%
Phase Separation
25%
Ionic Strength
25%
Turbidity
25%
Polyanion
25%
formation
25%
Aqueous Solution
25%
Lysine
25%
Glutamic Acid
25%
Pharmacology, Toxicology and Pharmaceutical Science
Coacervate
100%
Polypeptide
100%
Polyelectrolyte
75%
Complexation
25%
Ionic Strength
25%
Turbidity
25%
Polyanion
25%
Glutamic Acid
25%
Lysine
25%
Polycation
25%
Material Science
Polyelectrolyte
100%
Complexation
33%
Lysine
33%
Glutamic Acid
33%