Spring til hovednavigation
Spring til søgning
Spring til hovedindhold
Aalborg Universitets forskningsportal Hjem
Dansk
English
Hjem
Profiler
Projekter
Publikationer
Aktiviteter
Forskningsenheder
Faciliteter
Presse/medier
Priser
Forskningsdatasæt
Impacts
Søg efter ekspertise, navn eller tilknytning
Vis Scopus-profil
Jiajia Yan
Disordered Materials
https://orcid.org/0000-0001-5288-351X
2018
2022
Publikationer pr. år
Vis
Fingerprint
Netværk
Publikationer
(9)
Lignende profiler
(8)
Hvis du har foretaget ændringer i Pure, vil de snart blive vist her.
Fingerprint
Dyk ned i forskningsemnerne, hvor Jiajia Yan er aktive. Disse emneetiketter kommer fra dennes persons arbejder. Sammen danner de et unikt fingerprint.
Sorter
Vægt
Alfabetisk
Chemistry
Glass
100%
Borosilicate
60%
Structure
43%
Surface
43%
Metal Organic Framework
41%
X-Ray Diffraction
31%
Anode
29%
Time
26%
Lithiation
19%
Nanoparticle
19%
Volume
19%
Heating
17%
Calcium(0)
16%
Crystalline Material
14%
Heat Treatment
13%
Crack Propagation
13%
Hardness
13%
Buffer Solution
9%
Storage
9%
Purity
9%
Aggregation
9%
Imidazole
9%
Benzimidazole
9%
Fourier Transform Infrared Spectroscopy
9%
Doping
9%
Crystallization Behavior
8%
NMR Spectroscopy
8%
Mechanical Property
6%
Mechanical Strength
6%
Cracking (Chemical)
6%
Chemical Transformation
6%
Crosslinking
6%
Reaction Temperature
6%
Crack Initiation
6%
Encapsulation
5%
Physics
Glass
100%
Metal Organic Framework
41%
Lithium-Ion Batteries
29%
Differential Scanning Calorimetry
23%
Volume
19%
Silicon
19%
Composite
18%
Performance
18%
Heating
17%
Calcium
16%
Modulus of Elasticity
15%
Hardness
13%
Heat Treatment
13%
Networks
10%
Lithium
9%
Cobalt
9%
Energy Technology
9%
Aggregation
9%
Crystals
9%
FTIR Spectroscopy
9%
Steel
8%
Temperature
6%
Gradients
6%
Strength of Materials
6%
Cracking (Fracture)
6%
Operating Temperature
6%
Electrochemical Performance
5%
Encapsulation
5%
Engineering
Delithiation
19%
Performance
18%
Solid Oxide Fuel Cell
16%
Lithium-Ion Batteries
16%
Anode
16%
Steel
8%
Operation Temperature
8%
Isothermal
8%
Heating
8%
Mechanical Stability
8%
Mechanisms
8%
Preferred Orientation
8%
Induced Surface
6%
Storage
5%
High Potential
5%
Enhancement
5%
Hierarchical Structure
5%
Promising Candidate
5%
Transforms
5%
Specific Capacity
5%
Composite
5%
Melt Quenching
5%
Fluctuations
5%
Development
5%
Surfaces
5%