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Nonlinear fatty acid terminated polyanhydrides
D. Teomim, A. J. Domb
Hebrew University of Jerusalem
Research output
:
Contribution to journal
›
Article
›
peer-review
50
Scopus citations
Overview
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Keyphrases
Fatty Acids
100%
Polyanhydride
100%
Poly(sebacic anhydride)
57%
Drug Release
28%
Polymer Degradation
14%
Side Chain
14%
High Stability
14%
Pyridine
14%
Organic Solvents
14%
Hydrophobicity
14%
Chain Length
14%
Reaction Products
14%
White Materials
14%
Column Chromatography
14%
Polymer Crystallinity
14%
Surface Erosion
14%
Esterification
14%
Ricinoleic Acid
14%
Sebacic Acid
14%
Melt Condensation
14%
Drug Stability
14%
Systemic Research
14%
Polymer Drugs
14%
Fatty Acid Chloride
14%
Material Science
Polymer Degradation
100%
Microsphere
100%
Organic Solvents
100%
Hydrophobicity
100%
Column Chromatography
100%
Pharmacology, Toxicology and Pharmaceutical Science
Fatty Acid
100%
Polyanhydride
100%
Acid Anhydride
50%
Drug Release
25%
Hydrophobicity
12%
Implant
12%
Ricinoleic Acid
12%
Drug Stability
12%
Microsphere
12%
Sebacic Acid
12%
Chemical Engineering
Fatty Acids
100%
Column Chromatography
12%