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周 婧
经济学院
h-index
294
引用
9
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
2013
2024
每年的科研成果
概览
指纹图谱
合作网络
科研成果
(36)
相似学者
(3)
指纹图谱
深入其中 Jing Zhou 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
Chemistry
Pyrolysis
100%
Energetics
87%
Differential Scanning Calorimetry
44%
Melting Point
27%
Thermal Stability
25%
CL-20
24%
Pharmacokinetics
23%
Decomposition Temperature
16%
Nitration
16%
Carbonyl Group
14%
Reaction Activation Energy
14%
Thermal Decomposition Kinetics
14%
Structure
13%
Thermogravimetric Analysis
13%
1,3,4-oxadiazole
13%
Fourier Transform Infrared Spectroscopy
13%
Electrostatic Potential
12%
Eutectics
11%
Enthalpy of Formation
10%
Surface Analysis
9%
Hirshfeld Surface
9%
Nitroguanidine
9%
Chemistry
9%
Nitrotoluene
9%
Crystal Structure
9%
13C NMR Spectroscopy
9%
Tris
9%
1H NMR Spectroscopy
9%
NIR Spectroscopy
9%
Chemical Reactivity
9%
Perovskite
9%
Single Crystal X-Ray Diffraction
9%
Alkylation
9%
Fourier Transform Infrared Spectroscopy
9%
DFT-B3LYP Calculation
9%
1,2,4-oxadiazole
9%
Electron Density
9%
Nitroglycerin
9%
Thermoanalysis
9%
Nitrogen Dioxide
8%
Carbon Dioxide
8%
Condensed Phase
7%
Chemical Decomposition
7%
Electrophilic Reagent
6%
Thermokinetics
5%
Nitrous Oxide
5%
Material Science
Differential Scanning Calorimetry
75%
Explosive
51%
Thermal Stability
41%
Density
31%
Thermogravimetric Analysis
29%
HMX
29%
Thermal Property
22%
Nitration
22%
Activation Energy
22%
Thermal Analysis
20%
Scanning Electron Microscopy
19%
Perovskite
19%
Stabilizer (Agent)
19%
Fourier Transform Infrared Spectroscopy
18%
Impact Testing
16%
Composite Propellant
14%
Liquid Fuels
9%
Mechanical Strength
9%
Plastic Deformation
9%
Ultimate Tensile Strength
9%
Nuclear Magnetic Resonance
9%
Chemical Decomposition
9%
Material Processing
9%
Powder
9%
Plasticizer
9%
Analytical Method
9%
Near Infrared Spectroscopy
9%
Aluminum
6%
Engineering
Kinetic Parameter
24%
Decomposition Process
23%
Peak Temperature
21%
Stabilizer
20%
Activation Energy
19%
Storage Life
19%
Thermal Behavior
19%
Burning Rate
17%
Heating Rate
16%
Eutectics
14%
Melting Point
14%
Low-Temperature
12%
Mass Ratio
11%
Aging Time
11%
Impact Damage
9%
Main Component
9%
Peak Value
9%
Crystal Structure
9%
Artificial Intelligence
9%
Heating Temperature
9%
Pre-Exponential Factor
9%
Combustion Property
9%
Fracture Property
9%
Atmospheric Pressure
9%
Dehumidification
9%
Crosslinks
9%
Isosurface
9%
Damage State
9%
Rate Constant
9%
Reaction Model
9%
Great Influence
9%
Theoretical Study
9%
Kinetic Model
9%
Applicability
9%
Plastic Deformation
9%
Energy Density
9%
Stress Peak
9%
Electrostatic Potential
9%
Impact Test
8%
Drop Hammer
7%
Energetics
6%
Ultimate Tensile Strength
6%
Crosslinking Density
6%
Thermal Explosion
5%