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Specific anion effects on water structure adjacent to protein monolayers
Xin Chen
, Sarah C. Flores
, Soon Mi Lim
, Yanjie Zhang
,
Tinglu Yang
, Jaibir Kherb
,
Paul S. Cremer
Chemistry
Eberly College of Science
Biochemistry & Molecular Biology
Research output
:
Contribution to journal
›
Article
›
peer-review
126
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Scopus citations
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Dive into the research topics of 'Specific anion effects on water structure adjacent to protein monolayers'. Together they form a unique fingerprint.
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Keyphrases
Protein Monolayers
100%
Ion-specific Effects
100%
Protein Layer
100%
Water Structure
100%
Hofmeister Series
100%
Negatively Charged
66%
Positively Charged
66%
Polypeptide
66%
Surfactant Monolayers
66%
Bovine Serum Albumin
66%
Chaotropic Anions
66%
Biopolymers
33%
Attenuation
33%
Chemical Structure
33%
State of Charge
33%
Isoelectric Point
33%
Air-water Interface
33%
Sodium Salt
33%
Interfacial Layer
33%
Salt Effect
33%
Anion Binding
33%
Protein Surfactants
33%
PH Value
33%
Sum-frequency Generation Spectroscopy
33%
Pro-Gly-Pro
33%
Similarity Experiment
33%
Albumin Monolayers
33%
Polymer Monolayer
33%
Protein Polymer
33%
Amide Group
33%
Final Set
33%
Interfacial Water Structure
33%
Zwitterionic Surfactant
33%
Elastin-like
33%
Chemistry
Monolayers
100%
Polypeptide
40%
Bovine Serum Albumin
40%
State-of-Charge
20%
Isoelectric Point
20%
Spectroscopy
20%
Sodium Salt
20%
Surfactant
20%
Biopolymer
20%
Adlayer
20%
Salt Effect
20%
Zwitterionic Surfactant
20%
Elastin
20%
Amide
20%
Val-Pro
20%
Peptide
20%
Interfacial Water
20%
Biochemistry, Genetics and Molecular Biology
Bovine Serum Albumin
100%
Surfactant Protein
50%
Chemical Structure
50%
Biopolymer
50%
Isoelectric Point
50%
Zwitterionic Surfactant
50%
Elastin-Like Polypeptide
50%
Peptide
50%
Material Science
Monolayers
100%
Bovine Serum Albumin
33%
Sodium
16%
Structure (Composition)
16%
Polymer
16%
State-of-Charge
16%
Surface Active Agent
16%
Elastin
16%
Biopolymer
16%
Amphoteric Surfactant
16%
Peptide
16%