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南京工业大学 国内
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中文
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研究单位
科研成果
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何 一燕
材料科学与工程学院
h-index
1947
引用
22
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
2012
2025
每年的科研成果
综述
指纹
网络
科研成果
(47)
相似简介
(1)
指纹
深入其中 Yiyan He 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
Hydrogel
100%
Tumor
80%
Nanoparticle
50%
Surface (Surface Science)
31%
Dendrimer
29%
3D Bioprinting
27%
Polyethyleneimine
27%
Adhesive Hydrogel
27%
Composite Material
27%
Arginine
26%
Biocompatibility
22%
Self Assembly
21%
Sodium
19%
Critical Micelle Concentration
16%
Gene Expression
14%
Lysosome
14%
Shape Memory
13%
Magnetic Nanoparticle
13%
Metal-Organic Framework
13%
Microdevices
13%
Carbon Fiber
13%
Macrophage
13%
Interface Property
13%
Carbon Nanotube
13%
Gene Therapy
13%
Amino Acids
13%
Phase Composition
13%
Lysine
11%
Bond Strength (Materials)
11%
Histidine
9%
Lectin
6%
Electrophoretic Technology
6%
Dilution
6%
Structure (Composition)
6%
Hydrogen Bonding
6%
Arginylglycylaspartic Acid
6%
Shape Memory Polymer
6%
Cell Proliferation
6%
Light Scattering
5%
Transmission Electron Microscopy
5%
Pharmacology, Toxicology and Pharmaceutical Science
Hyaluronic Acid
29%
Gene Delivery
27%
Skin Injury
27%
Dendrimer
27%
Wound Healing
27%
Polysaccharide
27%
Neoplasm
23%
Breast Cancer
14%
Nanocarrier
13%
Gemcitabine
13%
Pancreas Tumor
13%
Caenorhabditis elegans
13%
Glibenclamide
13%
Lipopeptide
13%
Photoinitiator
13%
Hyaluronic Acid Derivative
13%
Soft Tissue Injury
13%
Magnetic Nanoparticle
13%
Nanogel
13%
Glycopeptide
13%
Protein P53
13%
Photodynamic Therapy
13%
Hypoxia
13%
Chitosan
11%
Fluorocarbon
11%
Disulfide Bond
9%
Pancreas Cancer
9%
Simvastatin
9%
Alginic Acid
9%
Gelling Agent
9%
Guanidine
8%
Critical Micelle Concentration
8%
Biocompatibility
7%
Wound Dressings
7%
Disulfide
6%
Nephrotoxicity
6%
Platinum Derivative
6%
Polyethyleneimine
6%
Thiazolidine
6%
Skin Defect
5%
Antiinfective Agent
5%
Engineering
Hydrogel
42%
Dendrimer
27%
Double-Network Hydrogel
13%
Scarless Healing
13%
Sodium Alginate
13%
Thickness Skin Wound
13%
Nanoparticle
13%
Injectable Hydrogel
13%
Fibre Metal Laminate
13%
Manufacturability
13%
Bioadhesive
13%
Injectability
8%
Multistage
6%
Hemocompatibility
6%
Hydrophobic
6%
Negatively Charged Surface
6%
Swelling Ratio
6%
Drug Delivery
6%
Promising Candidate
6%
Regenerative Medicine
6%
Making Stage
6%
Breakthrough
6%
Biomedical Application
6%
Controlled Release
6%
Polycation
6%
Printed Cell
6%
Nanosystems
6%
Ports and Harbors
6%
Far Cell
6%