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Thermosensitivity control of polyethlyenimine by simple acylation
Heejin Kim
, Seonju Lee
, Minwoo Noh
, So Hyun Lee
, Yeongbong Mok
, Geun Woo Jin
,
Ji Hun Seo
, Yan Lee
*
*
Corresponding author for this work
Research output
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Article
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peer-review
22
Citations (Scopus)
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Keyphrases
Lower Critical Solution Temperature
100%
Acylation
100%
Branched Polyethyleneimine
100%
Thermosensitivity
100%
Polyethlyenimine
100%
Acylate
80%
Temperature Transition
60%
Hydrophobicity
40%
Acyl Groups
40%
Elevated Temperature
20%
Salt Concentration
20%
NaCl Concentration
20%
Amines
20%
Transition Temperature
20%
Acidic Environment
20%
Hydrophilicity
20%
Polymer System
20%
Protonation
20%
Tertiary Amine
20%
Salting-out
20%
Acidification
20%
Acylation Reaction
20%
Delicate Balance
20%
Secondary Amines
20%
Surface Hydrophobicity
20%
Multiple Signals
20%
Dual Signal
20%
Primary Amines
20%
Sensitive Polymers
20%
Chemistry
Critical Solution Temperature
100%
Acylation
100%
Hydrophobicity
60%
Hydrophilicity
40%
Acyl Group
40%
Sodium Chloride
20%
Tertiary Amine
20%
Secondary Amine
20%
Primary Amine
20%
Salting Out
20%
Acidification
20%
Table Salt
20%
protonation
20%
Immunology and Microbiology
Solution and Solubility
100%
Acylation
100%
Heat Sensitivity
100%
Hydrophobicity
60%
Hydrophilicity
40%
Protonation
20%
Engineering
Hydrophilicity
100%
Salt Concentration
50%
Elevated Temperature
50%
Polymer System
50%
Protonation
50%
Secondary Amine
50%
Rich Amine
50%
Chemical Engineering
Lower Critical Solution Temperature
100%
Material Science
Hydrophobicity
100%