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Nan Gao
Dr.
Associate Professor
,
Mechanical Engineering
2009
2024
Research activity per year
Overview
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Research output
(28)
Projects
(5)
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(6)
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Dive into the research topics where Nan Gao is active. These topic labels come from the works of this person. Together they form a unique fingerprint.
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Engineering & Materials Science
Superhydrophobicity
100%
Nanoparticles
73%
Wetting
63%
Contact angle
53%
CdS nanoparticles
27%
ZnS nanoparticles
26%
Surface roughness
24%
Surface structure
22%
Atomic force microscopy
21%
Nanostructures
21%
Nanopillars
21%
Self assembly
20%
Liquids
20%
Gold nanoparticles
19%
Hydrophilicity
17%
Composite films
17%
Bacteria
17%
Zinc oxide
16%
Flow of water
16%
Photodetectors
16%
Substrates
15%
Nanowires
15%
Potassium
15%
Nanocomposites
13%
Laminar flow
13%
Condensation
12%
Crystals
12%
Characterization (materials science)
12%
Cells
12%
Photocatalytic activity
11%
Ultrasonics
10%
Energy dissipation
10%
Superhydrophilicity
10%
SiO2 nanoparticles
9%
Water
9%
Coatings
9%
Polymers
9%
Friction
8%
Field emission
7%
Electrodes
7%
Hysteresis
6%
Triglycerides
6%
Computer simulation
6%
Temperature
6%
Nanostructured materials
6%
Surface tension
5%
Nanobelts
5%
Neurons
5%
Angle measurement
5%
Thermionic emission
5%
Chemistry
Nanoparticle
43%
Surface
36%
Implant
24%
Atomic Force Microscopy
23%
Drop
21%
Nanopillar
17%
Surface Structure
17%
Nanocomposite
16%
Semiconductor
14%
Nanomaterial
14%
Retinal
14%
Surface Roughness
13%
Dissipation
13%
Friction Coefficient
13%
Jet
13%
Mammalian Cell
12%
Fat
12%
Zinc Oxide
12%
Hydrophilicity
11%
Fractionation
10%
Nanowire
10%
Force
10%
Energy
9%
Falling Film
8%
Graphene
8%
Simulation
8%
Liquid Film
8%
Additive
8%
Flow
8%
Hysteresis
7%
Coating Agent
7%
Field Emission
6%
Composite Material
6%
Liquid
5%
Triglyceride
5%
Lattice-Gas Model
5%
Musculoskeletal
5%
Physics & Astronomy
wettability
31%
solid surfaces
25%
liquids
22%
photometers
22%
friction
19%
water
17%
nanoparticles
16%
kinetic friction
16%
static friction
14%
niobates
14%
falling
14%
wetting
13%
laminar flow
12%
coefficient of friction
12%
potassium
12%
atomic force microscopy
12%
zinc oxides
11%
sliding
11%
performance
11%
assembly
10%
nanowires
10%
energy dissipation
9%
adhesion
9%
ultrasonics
9%
interfacial tension
9%
tuning
9%
polymers
9%
tubes
8%
hysteresis
8%
characterization
7%
attachment
6%
crystals
6%
kinetics
5%
field emission
5%
selectivity
5%
luminous intensity
5%
multiphase flow
5%