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Rui Kun
Associate Professor、Master's Supervisor
SCHOOL OF FLEXIBLE ELECTRONICS(FUTURE TECHNOLOGIES)|INSTITUTE OF ADVANCED MATERIALS(IAM)
Email
iamkrui
njtech.edu
cn
Website
https://iam.njtech.edu.cn/info/1031/4452.htm
h-index
7184
Citations
45
h-index
Calculated based on number of publications stored in Pure and citations from Scopus
2013
2025
Research activity per year
Overview
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Research output
(102)
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(6)
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Dive into the research topics where Kun Rui 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
Nanosheet
100%
Lithium Ion Battery
80%
Lithium
76%
Density
68%
Anode
63%
Cathode
63%
Oxide Compound
59%
Nanoparticle
58%
Vanadium
50%
Hydrogen Evolution
46%
Electrocatalyst
42%
Nanostructure
39%
Anode Material
38%
Oxygen Evolution
37%
Heterojunction
37%
Sodium Ion Battery
35%
Composite Material
34%
Lithium Ion
32%
Surface (Surface Science)
31%
Carbon Nanotube
31%
Graphene
30%
Cathode Material
30%
Reduced Graphene Oxide
30%
Alkaline Hydrogen Evolution
29%
Lithium-Sulfur Battery
29%
Manganese
29%
Metal Oxide
26%
Solid Electrolyte
25%
Nanofiber
24%
Water Splitting
24%
Lithium Metal Battery
23%
Garnet
23%
Ionic Liquid
22%
Lithium Battery
19%
Phase Composition
19%
Sodium
18%
Polyurethane
17%
Catalysis
17%
Nanorod
17%
Energy Density
17%
Graphene Oxide
16%
Supercapacitors
14%
Energy Level
14%
Metal-Organic Framework
13%
Lithium Dendrite
12%
Nanoribbon
12%
Corrosion
12%
Film
12%
Thermoplastics
11%
Polypyrrole
11%
Chemical Engineering
Nanosheet
66%
Nanoparticle
55%
Graphene
50%
Precious Metal
29%
Nanostructure
22%
Carbon Nanotube
20%
Polysulfide
17%
Pyrolysis
11%
Hydrogen Production
11%
Film
10%
Polyurethane
8%
Carbon Nanofibre
8%
Polyacrylonitrile
8%
Carbon Nitride
8%
Polydimethylsiloxane
7%
Zn Metal Anode
5%
Carbon Black
5%
Nanorod
5%
Hydrogen
5%
Polymer Gel
5%
Nanoneedles
5%
Carbon Dioxide
5%
Carbonization
5%
Polymerization
5%
Titanium Dioxide
5%
Desulfurization
5%
Hierarchical Porous
5%
Free Energy
5%
Nitride
5%
Metal-Organic Frameworks
5%
Co-Pyrolysis
5%
Joule Heating
5%
Diffusion
5%
Catholytes
5%
Manganese Oxide
5%
Aqueous Zinc Ion Batteries
5%
Catalytic Chemical Vapor Deposition
5%
Engineering
Engineering
16%
Conductive
13%
Heterostructures
13%
Graphene
11%
Hydrogen Evolution Reaction
11%
Realization
9%
Nanoparticle
8%
Oxygen Evolution Reaction
7%
Electrocatalyst
7%
Crystallographic Orientation
5%
State Reaction
5%
Dopants
5%
Metal Oxide Nanoparticles
5%
Wearable Electronics
5%
Dendrite-Free
5%
Structural Stability
5%
Metallic Matrix
5%
Silicon Case
5%
Electroreduction
5%
Graphene Sheet
5%
Resistance Heating
5%
Micromotion
5%
Layer Graphene
5%
Nanoflower
5%
Intermetallics
5%
Limited Application
5%
Volumetric Strain
5%
Fast Response
5%
Anisotropic Strain
5%
Interfacial Layer
5%
Electronic Textile
5%
Oxide Cathode
5%
Ion Exchange
5%
Hot Spot
5%
Biomedical Device
5%
Graphene Oxide
5%
Retention Capacity
5%
Gauge Factor
5%
Intelligent Sensor
5%
Electric Field
5%
Carbon Nanotube
5%
Surface Corrosion
5%
Charge Regulation
5%
Polymer Gel
5%
Cycling Stability
5%
Diffusion Kinetics
5%
Response Time
5%
Zinc-Air Battery
5%
Lithium Metal Battery
5%
Lithium Battery
5%