ET KangSynthesis, Characterization and Applications
Antimicrobial Materials and Interfaces
Synthesis, Characterization and Applications
Herausgegeben:Kang, En-Tang; Xu, Liqun; Li, Peng
ET KangSynthesis, Characterization and Applications
Antimicrobial Materials and Interfaces
Synthesis, Characterization and Applications
Herausgegeben:Kang, En-Tang; Xu, Liqun; Li, Peng
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provides systematic and detailed description/review on the synthesis, characterization and applications of each antimicrobial material and its related family members.
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provides systematic and detailed description/review on the synthesis, characterization and applications of each antimicrobial material and its related family members.
Produktdetails
- Produktdetails
- Verlag: Wiley-VCH
- Artikelnr. des Verlages: 1135382 000
- 1. Auflage
- Seitenzahl: 688
- Erscheinungstermin: 1. Oktober 2025
- Englisch
- Abmessung: 253mm x 174mm x 42mm
- Gewicht: 1563g
- ISBN-13: 9783527353828
- ISBN-10: 3527353828
- Artikelnr.: 73559435
- Herstellerkennzeichnung
- Wiley-VCH GmbH
- Boschstraße 12
- 69469 Weinheim
- wiley-vch@kolibri360.de
- Verlag: Wiley-VCH
- Artikelnr. des Verlages: 1135382 000
- 1. Auflage
- Seitenzahl: 688
- Erscheinungstermin: 1. Oktober 2025
- Englisch
- Abmessung: 253mm x 174mm x 42mm
- Gewicht: 1563g
- ISBN-13: 9783527353828
- ISBN-10: 3527353828
- Artikelnr.: 73559435
- Herstellerkennzeichnung
- Wiley-VCH GmbH
- Boschstraße 12
- 69469 Weinheim
- wiley-vch@kolibri360.de
En-Tang Kang is a Professor of the School of Materials and Energy at Southwest University (SWU) in Chongqing, China and an Emeritus Professor in the Department of Chemical & Biomolecular Engineering at the National University of Singapore (NUS). He is a Fellow of the Royal Society of Chemistry. Liqun Xu is a Professor of the School of Materials and Energy at SWU in Chongqing, China. Peng Li is a Professor and Director of Xi'an Biomedical Materials Engineering & Technology Research Center, Northwestern Polytechnical University (NPU) in Xi'an, China.
01 Cationic polymers-based antimicrobial materials
02 Design, Synthesis, and Cutting-Edge Applications of Novel Cationic Antimicrobial Polymers
03 Zwitterionic Polymers-Based Antibacterial Surfaces
04 Bifunctional and Smart Antibacterial Surfaces
05 Superhydrophobic antifouling and antimicrobial materials
06 Antimicrobial Peptides
07 Protease antibacterial materials
08 Antimicrobial Nano Metallics
09 Antimicrobial metal-organic frameworks
10 One-dimensional Antibacterial Materials
11 Two-dimensional antimicrobial materials
12 Nitric Oxide Delivery Materials for Antimicrobial Applications
13 Recent progress of biomaterials for antibacterial photodynamic therapy
14 Antibacterial Photothermal Materials Mechanism, Classification, and Applications
15 Sonodynamic sterilization materials
16 The Role of Piezoelectric Materials for Antibacterial Therapy
17 Advancements in Photocatalytic Antimicrobial Materials: Synthesis, Mechanisms, and Applications
18 Microneedle technology for the management of bacterial skin infections
19 Antimicrobial surfaces for in vivo applications
20 Polymer-based antibacterial ureteral stents: A critical discussion
02 Design, Synthesis, and Cutting-Edge Applications of Novel Cationic Antimicrobial Polymers
03 Zwitterionic Polymers-Based Antibacterial Surfaces
04 Bifunctional and Smart Antibacterial Surfaces
05 Superhydrophobic antifouling and antimicrobial materials
06 Antimicrobial Peptides
07 Protease antibacterial materials
08 Antimicrobial Nano Metallics
09 Antimicrobial metal-organic frameworks
10 One-dimensional Antibacterial Materials
11 Two-dimensional antimicrobial materials
12 Nitric Oxide Delivery Materials for Antimicrobial Applications
13 Recent progress of biomaterials for antibacterial photodynamic therapy
14 Antibacterial Photothermal Materials Mechanism, Classification, and Applications
15 Sonodynamic sterilization materials
16 The Role of Piezoelectric Materials for Antibacterial Therapy
17 Advancements in Photocatalytic Antimicrobial Materials: Synthesis, Mechanisms, and Applications
18 Microneedle technology for the management of bacterial skin infections
19 Antimicrobial surfaces for in vivo applications
20 Polymer-based antibacterial ureteral stents: A critical discussion
01 Cationic polymers-based antimicrobial materials
02 Design, Synthesis, and Cutting-Edge Applications of Novel Cationic Antimicrobial Polymers
03 Zwitterionic Polymers-Based Antibacterial Surfaces
04 Bifunctional and Smart Antibacterial Surfaces
05 Superhydrophobic antifouling and antimicrobial materials
06 Antimicrobial Peptides
07 Protease antibacterial materials
08 Antimicrobial Nano Metallics
09 Antimicrobial metal-organic frameworks
10 One-dimensional Antibacterial Materials
11 Two-dimensional antimicrobial materials
12 Nitric Oxide Delivery Materials for Antimicrobial Applications
13 Recent progress of biomaterials for antibacterial photodynamic therapy
14 Antibacterial Photothermal Materials Mechanism, Classification, and Applications
15 Sonodynamic sterilization materials
16 The Role of Piezoelectric Materials for Antibacterial Therapy
17 Advancements in Photocatalytic Antimicrobial Materials: Synthesis, Mechanisms, and Applications
18 Microneedle technology for the management of bacterial skin infections
19 Antimicrobial surfaces for in vivo applications
20 Polymer-based antibacterial ureteral stents: A critical discussion
02 Design, Synthesis, and Cutting-Edge Applications of Novel Cationic Antimicrobial Polymers
03 Zwitterionic Polymers-Based Antibacterial Surfaces
04 Bifunctional and Smart Antibacterial Surfaces
05 Superhydrophobic antifouling and antimicrobial materials
06 Antimicrobial Peptides
07 Protease antibacterial materials
08 Antimicrobial Nano Metallics
09 Antimicrobial metal-organic frameworks
10 One-dimensional Antibacterial Materials
11 Two-dimensional antimicrobial materials
12 Nitric Oxide Delivery Materials for Antimicrobial Applications
13 Recent progress of biomaterials for antibacterial photodynamic therapy
14 Antibacterial Photothermal Materials Mechanism, Classification, and Applications
15 Sonodynamic sterilization materials
16 The Role of Piezoelectric Materials for Antibacterial Therapy
17 Advancements in Photocatalytic Antimicrobial Materials: Synthesis, Mechanisms, and Applications
18 Microneedle technology for the management of bacterial skin infections
19 Antimicrobial surfaces for in vivo applications
20 Polymer-based antibacterial ureteral stents: A critical discussion







