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Improved gate effect enantioselectivity of phenylalanine-imprinted polymers in water by blending crosslinkers
Yasuo Yoshimi
, Noriyuki Ishii
Functional Control Systems
Department of Applied Chemistry
Applied Chemistry
Research output
:
Contribution to journal
›
Article
›
peer-review
15
Citations (Scopus)
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Dive into the research topics of 'Improved gate effect enantioselectivity of phenylalanine-imprinted polymers in water by blending crosslinkers'. Together they form a unique fingerprint.
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Medicine & Life Sciences
Phenylalanine
100%
Polymers
80%
N,N'-methylenebisacrylamide
69%
ethylene dimethacrylate
66%
Water
60%
Electrodes
46%
Atomic Force Microscopy
21%
Hydrophobic and Hydrophilic Interactions
20%
Chemical Compounds
Molecularly Imprinted Polymer
96%
Enantioselectivity
78%
Enantiomer
47%
Behavior as Electrode
45%
Phenylalanine
30%
Hydrophilicity
26%
Mixture
26%
Crosslinking
25%
Flexibility
24%
Atomic Force Microscopy
23%
Aqueous Solution
15%
Time
10%
Surface
9%
Earth & Environmental Sciences
polymer
69%
electrode
46%
water
27%
atomic force microscopy
21%
effect
21%
droplet
16%
roughness
15%
chemical property
15%
aqueous solution
15%