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Yaqi Li
PhD, Post.Doc
AAU Energi
Det Ingeniør- og Naturvidenskabelige Fakultet
Thermal Engineering
Hydrogen and Electro-fuels
https://orcid.org/0000-0003-3815-1245
Telefon
+4599402136
E-mail
yaqili
energy.aau
dk
Pontoppidanstræde 111
9220
Aalborg Øst
Danmark
2020
2025
Publikationer pr. år
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Projekter
(1)
Publikationer
(24)
Priser
(1)
Lignende profiler
(6)
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Alfabetisk
Engineering
Lithium-Ion Batteries
90%
Battery (Electrochemical Energy Engineering)
46%
Degradation Mechanism
22%
Nickel Manganese Cobalt
22%
Depth of Discharge
20%
Solid Electrolyte Interphase
20%
Electric Vehicle
19%
Lithium Ion Battery
19%
Active Material
17%
Battery Capacity
16%
Crack Propagation
12%
Elevated Pressure
10%
Internal Resistance
9%
Wind Power
8%
Interface Layer
8%
Coupled Model
8%
Solid Electrolyte Interface
8%
Crack Formation
8%
Matching Network
8%
Aging Effect
8%
Performance Degradation
8%
Alternating Current
8%
Direct Current
8%
Solid Oxide Electrolysis
8%
Electrolysis Cell
8%
Current Profile
8%
Charging Time
7%
State of Charge
6%
Mechanical Stress
6%
Constant Voltage
5%
Cycling Stability
5%
Portable Electronics
5%
Main Battery
5%
Temperature Time
5%
Main Reason
5%
Cycle Life
5%
Real Life
5%
Material Science
Lithium Ion Battery
100%
Battery (Electrochemical Energy Engineering)
76%
Lithium
46%
Anode
30%
Plating
22%
Solid Electrolyte
18%
Cathode
18%
Cobalt
17%
Manganese
17%
Oxide Compound
17%
Dielectric Spectroscopy
12%
Lithium Ion
10%
Crack Propagation
10%
State-of-Charge
9%
Graphene Oxide
8%
Graphene
8%
Lithium Battery
8%
Crack Formation
8%
Solid Electrolyte
8%
Scanning Electron Microscopy
8%
Film
6%
Electrochemical Reaction
5%
Keyphrases
Charging Protocol
12%
Lithium-ion Battery
11%
Lithium
10%
Lithium Plating
9%
Graphite
8%
Solid Electrolyte Interface Layer
8%
Constant Current
8%
Hydrogen Evolution Reaction
8%
Current Cycling
8%
Electrocatalytic Hydrogen Evolution
8%
Nanocatalyst
8%
Generative Moment Matching Networks
8%
Aging Process
8%
Membrane Gas Separation
8%
Degradation Mechanism
8%
Degradation Diagnosis
8%
Mixed Inputs
8%
Mechanism Degradation
8%
Evolution of Aging
8%
Loss Scenarios
8%
Capacity Loss
8%
Nickel Manganese Cobalt Oxide
8%
Battery Aging
8%
Digital Twin
8%
Aging Modes
8%
Fast-charging Protocol
8%
SEI Growth
8%
Equivalent Cycles
7%
Aged Battery
7%
Chemical Variation
7%
Interface Evolution
7%
Commercial Lithium-ion Batteries
7%
Lithium Loss
7%
Commercial Li-ion Battery
7%
Interface Formation
7%
Electrochemical Cycling
7%
Interphase Formation
7%
Operando
7%
Real-time Temperature Monitoring
7%
Molybdenum Trioxide
5%
Cathode-electrolyte Interphase
5%
Electrolyte Cathode
5%
Molybdenum Phosphide
5%
Post-mortem Analysis
5%
SEI Layer Growth
5%
Capacity Fade
5%
Aging Mechanism
5%