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Tom Wu
Chair Professor
,
Department of Applied Physics
Member of PRI, RISE
,
PolyU Academy for Interdisciplinary Research
https://orcid.org/0000-0003-0845-4827
Phone
27664616
Email
tom-tao.wu
polyu.edu
hk
h-index
31422
Citations
94
h-index
Calculated based on number of publications stored in Pure and citations from Scopus
2023
2024
Research activity per year
Overview
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Network
Research output
(16)
Prizes
(2)
Similar Profiles
(12)
Fingerprint
Dive into the research topics where Tom Wu is active. These topic labels come from the works of this person. Together they form a unique fingerprint.
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Weight
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Material Science
Nanowires
100%
ZnO
87%
Film
86%
Thin Films
81%
Halide
70%
Oxide Compound
70%
Heterojunction
56%
Surface (Surface Science)
52%
Single Crystal
51%
Solar Cell
47%
Ferroelectric Material
38%
Ferromagnetism
38%
Photoluminescence
36%
Nanostructure
34%
Quantum Dot
33%
Density
33%
Photovoltaics
33%
Nanoparticle
31%
Perovskite Solar Cell
24%
Magnetic Property
23%
Physical Property
23%
Transistor
23%
Magnetoresistance
21%
Photosensor
20%
Perovskite Quantum Dot
18%
Magnetism
17%
Oxygen Vacancy
17%
Carbon Nanotubes
15%
Nanostructured Material
15%
Optical Property
15%
Bismuth Ferrite
14%
Metal Halide
13%
Light-Emitting Diode
13%
Annealing
13%
Field Effect Transistors
11%
Cobalt
11%
Carrier Mobility
11%
Dielectric Material
11%
Transition Metal
11%
Piezoelectricity
11%
Composite Material
11%
Titanium Dioxide
10%
Electronic Property
10%
Surface Active Agent
9%
Graphene
9%
Two-Dimensional Material
9%
Photovoltaic Performance
9%
Multiferroic Material
9%
Crystal Structure
9%
Nanocomposite
9%
Keyphrases
Perovskite
49%
Hybrid Perovskites
47%
SrTiO3
40%
ZnO Nanowires
32%
Nanowires
31%
Heterostructure
29%
Manganites
27%
Single Crystal
25%
Room Temperature
24%
LaAlO3
24%
Magnetic Properties
23%
Halide Perovskites
23%
Physical Properties
23%
Resistive Switching
21%
Perovskite Solar Cells (PeSCs)
20%
Quantum Dots
20%
High Performance
20%
Ferromagnetism
19%
P-type
18%
Solar Cell
18%
Ultrathin
18%
Room Temperature Ferromagnetism
18%
Optical Properties
17%
BiFeO3
15%
Band Gap
15%
Perovskite Film
15%
Magnetoresistance
14%
Au Nanoparticles (AuNPs)
14%
Oxides
14%
Magnetic Field
13%
Manganite Thin Films
13%
First-principles Calculations
13%
Solution Process
13%
Mixed Halide Perovskites
13%
Pulsed Laser Deposition
12%
Annealing
12%
Optoelectronic Properties
12%
Low Temperature
12%
Photodetector
12%
Nanostructures
12%
Oxygen Vacancy
12%
Photoluminescence
11%
Magnetism
11%
Temperature Effect
11%
Charge Transport
11%
Two Dimensional
11%
Perovskite Quantum Dots
10%
MAPbI3
10%
Device Performance
10%
Hybrid Halide Perovskites
10%