Guomin Wang

About Guomin Wang

Guomin Wang, With an exceptional h-index of 23 and a recent h-index of 22 (since 2020), a distinguished researcher at City University of Hong Kong, specializes in the field of biomaterials design, surface modification, antibacterial mechanism, multifunctional surfaces.

His recent articles reflect a diverse array of research interests and contributions to the field:

Enhanced antibacterial activity of polyphenol-bound microtopography by synergistic chemical and micro/nanomechanical effects

Cotton Fibers with a Lactic Acid‐Like Surface for Re‐establishment of Protective Lactobacillus Microbiota by Selectively Inhibiting Vaginal Pathogens

Diffusion-driven fabrication of calcium and phosphorous-doped zinc oxide heterostructures on titanium to achieve dual functions of osteogenesis and preventing bacterial infections

Bio-orthogonal engineered peptide: A multi-functional strategy for the gene therapy of osteoporotic bone loss

Design and properties of antimicrobial biomaterials surfaces

Tuning the arrangement of lamellar nanostructures: achieving the dual function of physically killing bacteria and promoting osteogenesis [vol 10, pg 881, 2023]

Quantifiable relationship between antibacterial efficacy and electro–mechanical intervention on nanowire arrays

Dose-Dependent Effects in Plasma Oncotherapy: Critical In Vivo Immune Responses Missed by In Vitro Studies

Guomin Wang Information

University

Position

Postdoctoral Fellow Department of Physics

Citations(all)

2203

Citations(since 2020)

1925

Cited By

875

hIndex(all)

23

hIndex(since 2020)

22

i10Index(all)

33

i10Index(since 2020)

31

Email

University Profile Page

Google Scholar

Guomin Wang Skills & Research Interests

biomaterials design

surface modification

antibacterial mechanism

multifunctional surfaces

Top articles of Guomin Wang

Enhanced antibacterial activity of polyphenol-bound microtopography by synergistic chemical and micro/nanomechanical effects

Composites Part B: Engineering

2024/4/25

Cotton Fibers with a Lactic Acid‐Like Surface for Re‐establishment of Protective Lactobacillus Microbiota by Selectively Inhibiting Vaginal Pathogens

Advanced Healthcare Materials

2023/12/7

Diffusion-driven fabrication of calcium and phosphorous-doped zinc oxide heterostructures on titanium to achieve dual functions of osteogenesis and preventing bacterial infections

Acta Biomaterialia

2024/2/1

Bio-orthogonal engineered peptide: A multi-functional strategy for the gene therapy of osteoporotic bone loss

Biomaterials

2023/11/1

Design and properties of antimicrobial biomaterials surfaces

2023/6

Tuning the arrangement of lamellar nanostructures: achieving the dual function of physically killing bacteria and promoting osteogenesis [vol 10, pg 881, 2023]

MATERIALS HORIZONS

2023/5/9

Quantifiable relationship between antibacterial efficacy and electro–mechanical intervention on nanowire arrays

Advanced Materials

2023/5

Dose-Dependent Effects in Plasma Oncotherapy: Critical In Vivo Immune Responses Missed by In Vitro Studies

Biomolecules

2023/4/21

Nanostructured Conductive Polypyrrole for Antibacterial Components in Flexible Wearable Devices

Research

2023/3/10

Smart self-healing coatings on biomedical magnesium alloys: a review

2023/1/1

Correction: Tuning the arrangement of lamellar nanostructures: achieving the dual function of physically killing bacteria and promoting osteogenesis

Materials Horizons

2023

Cold air plasma improving rheumatoid arthritis via mitochondrial apoptosis pathway

Bioengineering & Translational Medicine

2023/1

Flexible and biocompatible polystyrene/multi-walled carbon nanotubes films with high permittivity and low loss

ES Materials & Manufacturing

2022/11/24

Hierarchical CuO–ZnO/SiO2 Fibrous Membranes for Efficient Removal of Congo Red and 4-Nitrophenol from Water

Advanced Fiber Materials

2022/10

Dynamic active sites on plasma engraved Ni hydroxide for enhanced electro-catalytic urea oxidation

Journal of Energy Chemistry

2022/8/1

Versatile phenol‐incorporated nanoframes for in situ antibacterial activity based on oxidative and physical damages

Advanced Functional Materials

2022/4

An in-situ magnesium hydroxide nanosheet layer modified magnesium alloy and preparation and application thereof

2022/3/24

Balancing the biocompatibility and bacterial resistance of polypyrrole by optimized silver incorporation

Biomaterials Advances

2022/3/1

Material with supercapacitance modified surface and preparation method and application thereof

2021/11/25

An antibacterial platform based on controllable electro-mechanical interactions at the materials/bacteria interface

2021/11/24

See List of Professors in Guomin Wang University(City University of Hong Kong)