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南京工业大学 国内
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科研成果
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房 贞兰
教授
柔性电子(未来科技)学院|先进材料研究院
电子邮件
iamzlfang
njtech.edu
cn
网站
https://iam.njtech.edu.cn/info/1029/3490.htm
h-index
1982
引用
14
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
2009
2025
每年的科研成果
综述
指纹
网络
科研成果
(37)
相似简介
(5)
指纹
深入其中 Zhenlan Fang 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
1,3,4-oxadiazole
40%
Ammonia
10%
Antiferromagnetic Exchange
18%
Band Gap
5%
Base
9%
Carboxylic Acid
9%
Chelating Agent
9%
Controlled Substance
9%
Coordination Polymer
54%
Crystal Structure
9%
Density Functional Theory
13%
Electronic State
9%
Energy Storage
9%
Excited State
13%
formation
36%
Heterocyclic Compound
9%
Hydrogen Bonding
9%
Hydrothermal Synthesis
22%
Hydroxyl
9%
Imidazole
18%
Lanthanoid Atom
27%
Luminiscence Type
21%
Magnetic Property
27%
Magnetism
9%
Metal Ion
9%
Metal Organic Framework
45%
Metal-Organic Framework
13%
Micro Porosity
13%
N-alkylation
9%
Nanocrystalline Material
27%
Nanoparticle
10%
Oleic Acid
9%
Optical Property
18%
Oxygen Atom
9%
Photoluminescence
6%
Polymer Synthesis
9%
Red
13%
Redox Reaction
5%
Single-Crystal X-Ray Crystallography
13%
Single-Crystal-to-Single-Crystal Transformation
13%
Solvothermal Method
9%
Supercapacitors
5%
Transmetalation
9%
UV/VIS Spectroscopy
9%
yellow
13%
Material Science
Asymmetric Supercapacitor
12%
Capacitance
21%
Catalysis
15%
Catalyst Activity
9%
CO2 Photoreduction
9%
Contrast Medium
9%
Density
5%
Energy Density
10%
Halide
9%
Heterogeneous Catalysis
9%
Hierarchical Porosity
9%
Hybrid Material
13%
Hydrogen Bonding
9%
Hydrogenation
9%
Hydrothermal Synthesis
22%
Lanthanide Series
40%
Luminescence
17%
Magnetic Property
27%
Metal-Organic Framework
100%
Nanocomposite
18%
Nanoparticle
44%
Nanostructure
9%
Optical Property
20%
Oxide Compound
9%
Phase Composition
5%
Phosphor
18%
Photocatalysts
9%
Photochromics
9%
Photoluminescence
6%
Physical Property
10%
Quantum Dot
9%
Self Assembly
21%
Silver
9%
Single Crystal X-Ray Diffraction
13%
Supercapacitors
36%
Surface (Surface Science)
22%
Tomography
6%
Tumor
5%
Chemical Engineering
Alkali Metal
9%
Condensation Reaction
9%
Europium
9%
Hydrogenation
6%
Mesopore
15%
Metal-Organic Frameworks
45%
Nanoparticle
44%
Nanostructure
9%
Oleic Acid
9%
Rare Earth Element
33%
Selective Hydrogenation
9%
Sulfuric Acid
9%
Temperature Programmed Desorption
6%