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Ni Ran
Assoc Prof
Associate Professor
,
School of Chemistry, Chemical Engineering and Biotechnology
https://orcid.org/0000-0001-9478-0674
Email
r.ni
ntu.edu
sg
h-index
h10-index
h5-index
2598
Citations
25
h-index
Calculated based on number of publications stored in Pure and citations from Scopus
1212
Citations
19
h-index
Calculated based on number of publications stored in Pure and citations from Scopus
473
Citations
12
h-index
Calculated based on number of publications stored in Pure and citations from Scopus
2003
2025
Research activity per year
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Dive into the research topics where Ni Ran is active. These topic labels come from the works of this person. Together they form a unique fingerprint.
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Material Science
Binary Mixture
8%
Carbon Nanotube
8%
Coarse Grained Model
5%
Complexation
17%
Crystal Structure
15%
Crystalline Material
40%
Density
81%
Dynamical Heterogeneity
8%
Enzyme
8%
Film
8%
Fluidics
8%
Functional Material
15%
Glass Transition
45%
Hydrodynamics
26%
Luminescence
8%
Metamaterial
5%
Micelle
8%
Monolayers
42%
Multilayer
8%
Nanoparticle
34%
Nanorod
10%
Nanosheet
8%
Nucleation
69%
Particle Shape
14%
Particle Synthesis
8%
Percolation
8%
Phase Composition
5%
Photonic Band Gap
7%
Photonic Crystal
26%
Polyelectrolyte
34%
Rigidity
8%
Self Assembly
100%
Solid Solutions
8%
Superlattice
23%
Supersaturation
11%
Surface (Surface Science)
35%
Surface Active Agent
11%
Surface Roughness
13%
Thermomechanical Property
8%
Thin Films
8%
Vitrification
8%
Vitrimer
17%
Keyphrases
Active Colloids
8%
Bead Chain
8%
Branched Polyelectrolyte
8%
Chiral Photonic Crystals
8%
Clot Lysis
8%
Controlled Cross-linking
8%
Covalent Adaptive Network
8%
DNA-coated Colloids
8%
Dual-mode Immunoassay
8%
Dynamic Assembly
8%
Fibrin Degradation
8%
Hard Rods
8%
Hexatic
8%
Hexatic Phase
8%
Hidden Dynamics
8%
Hidden Symmetries
8%
Hinge Structure
8%
Histidine-rich Glycoprotein
8%
Hybrid Colloids
8%
Jamming Transition
8%
Ligand Density
8%
Local Density
8%
Mobile DNA
8%
Multivalency
8%
Multivalent Binding
8%
Nanoparticle Adsorption
8%
Nanorod Assembly
8%
Nanotubide
8%
Ordered Assembly
8%
P2Y12
8%
P2Y12 Receptor
8%
Patchy Particles
8%
Plasmin
8%
Plasminogen Activation
8%
Polymer Amphiphiles
8%
Random Equilibrium
8%
Random Organization
8%
Reentrance
8%
Self-dual
8%
Shape Coding
8%
Silica Nanospheres
8%
Small Sphere
8%
Solution Theory
8%
Spherical Polyelectrolyte Brushes
8%
Spinodal
8%
Stability Phase Diagram
8%
Static Behavior
8%
Structural Signature
8%
Thermal Noise
8%
Vitrimer
8%