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Joe Lin public CV
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Joe Lin
Dr
Postdoctoral Researcher
,
Applied BioSciences
Academic Casual
,
School of Engineering
https://orcid.org/0000-0002-2086-184X
Email
joe.lin
mq.edu
au
h-index
682
Citations
12
h-index
Calculated based on number of publications stored in Pure and citations from Scopus
2019
2025
Research activity per year
Overview
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Projects
(1)
Research Outputs
(15)
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Dive into the research topics where Joe Lin 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
Graphene
100%
Superlattices
76%
Electrodes
61%
Electrolytes
59%
Carbon
53%
Hydrogen peroxide
52%
Nanospheres
50%
Sodium-ion batteries
46%
Anodes
42%
Carbonates
41%
Acids
38%
Electrons
34%
Amorphization
33%
Manganese oxide
32%
Metalorganic frameworks
32%
Metals
30%
Nanocrystals
30%
Oxygen reduction reaction
30%
Fabrication
30%
Phase interfaces
30%
Lithium-ion batteries
29%
Titanium dioxide
26%
Lithium
26%
Ethers
23%
Intercalation
22%
Oxidation
22%
Dimethylformamide
22%
Catalysts
21%
Nanoparticles
20%
Monolayers
20%
Oxides
17%
Derivatives
16%
Graphite
16%
Sodium
15%
Titanium
14%
Carbon nanotubes
14%
Nucleation
14%
Synchrotrons
13%
Acetic acid
13%
Ethylene
12%
Ions
12%
Esters
11%
Water
11%
Hydrogen
10%
Modulation
10%
Grain boundaries
10%
Electronic structure
10%
X ray diffraction
9%
Catalyst selectivity
9%
Electron microscopes
9%
Chemistry
Graphene
63%
Hydrogen Peroxide
47%
Behavior as Electrode
45%
Superlattice
41%
Anode
32%
Carbonate
31%
Reduction
31%
Nanosphere
29%
Amorphization
25%
Oxidation Potential
21%
Carbon Atom
19%
Dioxygen
18%
Quantum Dot
18%
Acid
17%
Disorder
17%
Sphere
17%
Surface
16%
Metal Oxide
16%
Titanium Dioxide
16%
Nanocrystal
16%
Meso Porosity
15%
Flow
15%
Graphite
14%
Grain Boundary
14%
Ether
13%
Intercalation Compound
13%
Energy
12%
Monolayer
11%
Electron Particle
11%
Sodium Atom
10%
Catalyst
10%
Nanoparticle
10%
Kelvin Probe Force Microscopy
9%
Carbon Nanotube
9%
Mass Transfer
9%
Crystal Nucleation
9%
Reaction Selectivity
8%
Solvent
8%
Hydrogen
8%
Energy Consumption
8%
Silicon Monoxide
8%
Work Function
7%
Acetic Acid
7%
Flake Like Crystal
7%
Reaction Property
7%
Reduction Potential
7%
Safety
6%
Formate
6%
N,N-Dimethylformamide
6%
Composite Material
6%
Physics & Astronomy
electrochemical synthesis
31%
hydrogen peroxide
24%
carbonates
23%
electric batteries
20%
lithium
18%
anodes
17%
graphite
17%
electrolytes
16%
graphene
16%
ethylene
14%
carbon
13%
ions
9%
carbon cycle
9%
electrodes
8%
oxygen
8%
retaining
7%
electron transfer
6%
selectivity
6%
hydrofluoric acid
6%
catalysts
6%
reaction kinetics
6%
mass transfer
6%
Raman spectroscopy
5%
electrons
5%
leaves
5%
surface properties
5%
engineering
5%