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Non-DLVO silica interaction forces in NMP-water mixtures. II. An asymmetric system
Jung Hyun Lee
, J. Carson Meredith
Research output
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Contribution to journal
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Article
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peer-review
12
Citations (Scopus)
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Dive into the research topics of 'Non-DLVO silica interaction forces in NMP-water mixtures. II. An asymmetric system'. Together they form a unique fingerprint.
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Chemical Compounds
Hydrophilic Surface
46%
Hydrophobic Surface
42%
Force
39%
Mixture
25%
Attractive Force
25%
Plate Glass
24%
Bubble
20%
Solvent Mixture
20%
Surface
18%
Sphere
16%
Atomic Force Microscopy
15%
Purity
9%
Medicine & Life Sciences
N-methylpyrrolidone
100%
Silicon Dioxide
66%
Water
39%
Wettability
27%
Atomic Force Microscopy
23%
Glass
18%
Physics & Astronomy
silicon dioxide
44%
water
33%
interactions
23%
wettability
10%
binary mixtures
10%
attraction
9%
bubbles
7%
atomic force microscopy
7%
glass
5%
Engineering & Materials Science
Silica
60%
Water
31%
Binary mixtures
12%
Atomic force microscopy
12%
Wetting
9%
Glass
7%