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Tetazac: A Novel Artificial Receptor for Binding co-Amino Carboxylates
F. P. Schmidtchen
Natural Sciences
Research output
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Contribution to journal
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Article
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peer-review
92
Scopus citations
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Dive into the research topics of 'Tetazac: A Novel Artificial Receptor for Binding co-Amino Carboxylates'. Together they form a unique fingerprint.
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Keyphrases
Amino
100%
Carboxylate
100%
Ditopic
100%
Synthetic Receptors
100%
Protic
50%
Substructure
50%
Zwitterion
50%
Host Compounds
50%
Aqueous Methanol
50%
Kappa Coefficient
50%
Ammonium Salts
50%
Ammonium Groups
50%
Aminobutyric Acid
50%
Overall Yield
50%
Association Constant
50%
Collaborative Action
50%
Convergent Strategy
50%
Zwitterionic Species
50%
Polytopic
50%
Binding Selectivity
50%
P-Xylene
50%
Ditopic Receptor
50%
Anion Hosts
50%
Linearly Connected
50%
K+ Ion
50%
Synthesizability
50%
Ion-selective Potentiometry
50%
Azacrown
50%
6-aminohexanoic Acid
50%
Complexation Studies
50%
Target Receptor
50%
Tetrahedral Anion
50%
Pharmacology, Toxicology and Pharmaceutical Science
Carboxylate
100%
4 Aminobutyric Acid
100%
Artificial Receptor
100%
Receptor
100%
Aminocaproic Acid
66%
Complexation
33%
Binding Selectivity
33%
Methanol
33%
Potassium Ion
33%
Chemistry
Carboxylic Acid
100%
Gamma-Aminobutyric Acid
100%
Complexation
33%
Methanol
33%
Potassium Ion
33%
Ammonium Salt
33%
Association Constant
33%
6-Aminohexanoic Acid
33%
NMR Spectroscopy
33%
Ion Selective Potentiometry
33%
Ammonia
33%
Potassium Ion
33%