Design, Synthesis, and Characterization of Graphene−Nanoparticle Hybrid Materials for Bioapplications
Perry T. Yin,† Shreyas Shah,‡ Manish Chhowalla,§ and Ki-Bum Lee*,†,‡,∥
(本文共49页,255篇文献。)就石墨烯纳米混杂材料的合成及表征、在生物传感器、生物成像、干细胞及组织工程学、生物相容性等方面进行了综述,并展望了未来的趋势。
羊年第一帖,祝斑竹及各位虫友:羊年大吉、洋洋得意!!
CONTENTS
1. Introduction A
2. Synthesis and Characterization of Graphene−Nanoparticle Hybrid Materials C
2.1. Graphene and Graphene Oxide C
2.2. Graphene−Nanoparticle Composites D
2.2.1. Reduction Methods To Form Graphene−Nanoparticle Composites E
2.2.2. Hydrothermal Methods To Form Graphene−Nanoparticle Composites F
2.2.3. Electrochemical Methods To Form Graphene−Nanoparticle Composites G
2.2.4. Ex Situ Methods To Form Graphene−Nanoparticle Composites I
2.3. Graphene-Encapsulated Nanoparticles J
3. Graphene−Nanoparticle Hybrid Materials for Biosensing Applications K
3.1. Electronic Sensors L
3.2. Electrochemical Sensors O
3.2.1. Immobilization of Biomolecules O
3.2.2. Catalysis of Electrochemical Reactions R
3.3. Optical Sensors U
3.3.1. Fluorescence-Based Sensors U
3.3.2. SERS-Based Sensors X
4. Cellular Interactions with Graphene−Nanoparticle Hybrid Materials Z
4.1. Bioimaging AA
4.1.1. Magnetic Resonance Imaging (MRI) AA
4.1.2. Raman Spectroscopy AA
4.1.3. Fluorescence Imaging AC
4.2. Photothermal Therapies AC
4.3. Delivery of Drugs and Genes AF
4.4. Multifunctional and Multimodal Approaches AH
4.5. Stem Cell and Tissue Engineering Approaches AK
4.6. Biocompatibility of Graphene−Nanoparticle Hybrid Materials AL
4.6.1. Biocompatibility of Graphene Materials AL
4.6.2. Biocompatibility of Graphene−Nanoparticle Hybrid Materials AM
5. Concluding Remarks and Future Perspectives AO
Author Information AQ
Corresponding Author AQ
Notes AQ
Biographies AQ
Acknowledgments AR
Abbreviations AR
References AS![Chem. Rev.2.19新鲜:石墨烯纳米颗粒混杂材料设计 合成及应用]()
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