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段 国义
化学与化工学院
h-index
583
引用
13
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
2018
2025
每年的科研成果
概览
指纹图谱
合作网络
科研成果
(23)
指纹图谱
深入其中 Guoyi Duan 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
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Material Science
Carbon Dioxide
100%
Carbon Nanotube
14%
Catalysis
16%
Chemisorption
16%
Clean Fuel
14%
Covalent Organic Framework
14%
Density
29%
Electrocatalysts
20%
Film
14%
Gas Supply
7%
Hydrogenation
14%
Ion Chromatography
14%
Ionic Liquid
78%
Layered Double Hydroxides
14%
Liquid Interface
5%
Nanoparticle
16%
Nanosheet
14%
Oxidation Reaction
21%
Oxide Compound
7%
Oxygen Evolution
28%
Oxygen Vacancy
14%
Palladium
14%
Phase Composition
7%
Polymerization
14%
Polypyrrole
14%
Scanning Electron Microscopy
6%
Silver
26%
Sodium
19%
Stainless Steel
28%
Steel Fiber
21%
Surface (Surface Science)
21%
Type Metal
7%
Vitamin C
14%
Voltammetry
7%
Water Splitting
14%
X-Ray Diffraction
6%
Zirconia
14%
Chemistry
Ammonia
16%
Ammonia Synthesis
14%
Ascorbate
5%
Ascorbic Acid
5%
Carbon Dioxide
41%
Carbon Dioxide
16%
Carbon Dioxide
9%
Carbon Dioxide Electroreduction
14%
Carbon Dioxide Reduction
14%
Cation
9%
Chemoselectivity
14%
CO2 Reduction Reaction
7%
Current Density
30%
Dimethyl Adipate
28%
Diphenylamine
14%
Dopamine
14%
Electrocatalyst
15%
Electrolytic Cell
14%
Formate
14%
Haber-Bosch Process
9%
Hydrogen
17%
Hydrogen Peroxide
5%
Ion Chromatography
14%
Ionic Liquid
93%
Liquid Film
5%
Mechanistic Study
17%
Modified Electrodes
14%
Multi-Walled Carbon Nanotube
14%
Organic Compound
9%
Oxygen Reduction Reaction
8%
Palladium
14%
Phenol
14%
Polymerization
7%
Polypyrrole
14%
Porosity
17%
Reactive Oxygen Species
14%
Salen
14%
Sodium
14%
Sulfonate
14%
Table Salt
9%
Uric Acid
5%
Zirconia
14%
Engineering
Acidic Condition
19%
Active Site
7%
Advanced Oxidation Process
14%
Ammonia Synthesis
14%
Carbon Dioxide Electroreduction
14%
Cu Surface
14%
Electrocatalyst
13%
Electrocatalysts
7%
Electrolytic Cell
14%
Energetics
7%
Enzymatic Activity
9%
Flow Rate
7%
Flow Velocity
7%
Haber-Bosch Process
9%
Hydrogen Evolution Reaction
7%
Ion Chromatography
14%
Liquid Layer
14%
Low-Temperature
9%
Microenvironments
14%
Mild Condition
19%
Nanosheet
14%
Overall Water Splitting
14%
Oxygen Evolution Potential
9%
Oxygen Evolution Reaction
7%
Porous Structure
7%
Reactant
9%
Stainless Steel
14%
Steel Fiber
10%
Water Splitting
14%