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郭 伟
物理学院
h-index
2221
引用
24
H-指数
根据储存在 Pure 的刊物以及来自 Scopus 的引用文献数量计算
2004
2025
每年的科研成果
概览
指纹图谱
合作网络
科研成果
(88)
指纹图谱
深入其中 Wei Guo 为活跃的研究主题。这些主题标签来自此人的成果。它们共同形成唯一的指纹。
分类
加权
按字母排序
Material Science
Density
100%
Energy Density
97%
Transition Metal
73%
Monolayers
67%
Scanning Tunneling Microscopy
58%
Metal Surface
56%
Electronic Structure
54%
Quantum Dot
53%
Optical Property
48%
Nanoparticle
44%
Explosive
43%
Electronic Property
42%
Nanocrystalline Material
32%
Platinum
32%
Polymerization
31%
Hydrogen Evolution
31%
Oxide Compound
30%
Nucleation
30%
Electronic Structure Calculation
30%
Nitrogen Desorption
28%
Nanowire
28%
Hydrogen Peroxide
28%
Ab Initio Calculation
28%
Catalysis
28%
Nanotube
28%
Lithium
28%
Graphitic Carbon Nitride
28%
Electrocatalysts
27%
Crystal Structure
25%
Film
23%
Doping (Additives)
22%
Carbon Dioxide
21%
Materials Design
21%
Nitride Compound
20%
Thermal Stability
20%
Amorphous Material
18%
Perovskite
18%
Nanosheet
18%
Magnetic Property
18%
Reduced Graphene Oxide
18%
Zinc
18%
Nanoribbon
18%
Elastic Moduli
17%
Carbon Monoxide
17%
Heterojunction
16%
Photocatalysts
16%
Desorption
16%
Battery (Electrochemical Energy Engineering)
16%
Materials Property
16%
Ferroelectric Material
15%
Chemistry
Structure
66%
Energetics
60%
Density Functional Theory
46%
Laser Induced Breakdown Spectroscopy
42%
First Principle
39%
Scanning Tunneling Microscopy
39%
Transition Element
36%
Electronic State
36%
Phthalocyanine
32%
Electric Field
28%
Laser Induced Plasma
28%
Bimetallic Catalyst
28%
Reactive Molecular Dynamics
28%
CL-20
28%
Molecular Dynamics Study
28%
Molecular Orbital
28%
Molecular Dynamics
27%
Monolayer
26%
Carbohydrazide
22%
Perchlorate
19%
Transition State
19%
Tetrazole
18%
1,2,4-Triazole
17%
Pyrolysis
16%
Mild Steel
14%
Fdd2
14%
Coefficient of Performance
14%
Ab Initio Calculation
14%
Magnetic Impurity
14%
Covalent Bond
14%
Zinc Cation
14%
Graphene Oxide
14%
Flash Pyrolysis
14%
Surface State
14%
Hydrogen Production
14%
Carbon Oxide
14%
Metal Atom
14%
Fermi Level
14%
Metalloid
14%
Ferromagnetic Material
14%
Nitrogen Reduction Reaction
14%
Crystal Structure
14%
Molecular Reorientation
14%
Electrostatic Force
14%
Lithium
14%
Transition Metal Oxide
14%
Single Atom Catalyst
14%
Field Effect
14%
Perovskite
14%
Neutron Diffraction
14%
Engineering
Energetics
42%
Energy Density
19%
Nanosecond
18%
Principal Components
18%
Demonstrates
17%
Microstructure
14%
Adsorption
14%
Dimensionality
14%
Peak Shift
14%
Face-Centered Cubic
14%
Nodal Point
14%
Realization
14%
Electric Field
14%
Strain Field
14%
Macroscale
14%
Characteristic Peak
14%
Thermodynamic Stability
14%
Battery (Electrochemical Energy Engineering)
14%
Performance Prediction
14%
Monolayer
14%
Active Site
14%
Organic Material
14%
Assuming
14%
Hydrogen Production for Fuel Cells
14%
Chemical Kinetic Modeling
14%
Filter Paper
14%
Recognition Rate
14%
Support Vector Machine
14%
Elementary Reaction
14%
Component Analysis
14%
Saturable Absorber
14%
Two Dimensional
14%
Superlattice
14%
Zigzag Configuration
14%
Solid Carbon
14%
Temperature Range
14%
Thermoelectrics
14%
Temperature Behavior
14%
Crystal Structure
14%
Nanotube
14%
Temperature Condition
9%
Microscale
9%
Low-Temperature
9%
One Dimensional
9%
Magnetic Field
9%
Couplings
7%
Obtains
7%
Energy Engineering
7%
Nonlinearity
7%
Industrial Applications
7%