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Volumn 334, Issue 2, 2009, Pages 139-145
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Mechanism of formation of vesicle fused phospholipid monolayers on alkanethiol self-assembled monolayer supports
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Author keywords
Adsorption kinetics; AFM; Atomic force microscope; Electrochemical impedance spectroscopy; Supported membrane
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Indexed keywords
ADSORPTION KINETICS;
AFM;
AFM IMAGES;
ALKANETHIOL;
ATOMIC FORCE MICROSCOPE;
ATOMIC-FORCE MICROSCOPIES;
CONTACT MODES;
DIMYRISTOYL PHOSPHATIDYLCHOLINE;
ELECTROCHEMICAL-IMPEDANCE SPECTROSCOPIES;
GEL-TRANSITION TEMPERATURES;
HYDROPHOBIC SURFACES;
MECHANISM OF FORMATIONS;
MONOLAYER GROWTHS;
OCTADECANETHIOL;
PHOSPHOLIPID MONOLAYERS;
PHOSPHOLIPID VESICLES;
SUPPORTED MEMBRANE;
VESICLE FUSIONS;
ACOUSTIC MICROSCOPES;
ADSORPTION;
ATOMIC FORCE MICROSCOPY;
ATOMIC SPECTROSCOPY;
ATOMS;
ELECTROCHEMICAL CORROSION;
ELECTRON ENERGY LEVELS;
GELATION;
HYDROPHOBICITY;
LIPOSOMES;
METAL ANALYSIS;
PHOSPHOLIPIDS;
SELF ASSEMBLED MONOLAYERS;
SURFACE CHEMISTRY;
SURFACE PLASMON RESONANCE;
ELECTROCHEMICAL IMPEDANCE SPECTROSCOPY;
ALKANE;
DIMYRISTOYLPHOSPHATIDYLCHOLINE;
OCTADECANETHIOL;
SELF ASSEMBLED MONOLAYER;
THIOL;
UNCLASSIFIED DRUG;
ARTICLE;
ATOMIC FORCE MICROSCOPY;
ELECTROCHEMICAL IMPEDANCE SPECTROSCOPY;
HYDROPHOBICITY;
MEMBRANE RESISTANCE;
MEMBRANE VESICLE;
PRIORITY JOURNAL;
TEMPERATURE SENSITIVITY;
ADSORPTION;
DIMYRISTOYLPHOSPHATIDYLCHOLINE;
ELECTROCHEMICAL TECHNIQUES;
LIPID BILAYERS;
LIPOSOMES;
MICROSCOPY, ATOMIC FORCE;
SULFHYDRYL COMPOUNDS;
SURFACE PROPERTIES;
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EID: 67349135668
PISSN: 00219797
EISSN: None
Source Type: Journal
DOI: 10.1016/j.jcis.2009.03.007 Document Type: Article |
Times cited : (21)
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References (26)
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