Assoc. Prof. Stephen Beirne

About Assoc. Prof. Stephen Beirne

Assoc. Prof. Stephen Beirne, With an exceptional h-index of 34 and a recent h-index of 29 (since 2020), a distinguished researcher at University of Wollongong, specializes in the field of Biofabrication, Additive Manufacturing, Additive Fabrication, 3D Printing, Wireless Sensing Systems.

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

Understanding the relationship between surfing performance and fin design

Evaluation of osseointegration of plasma-treated polyaryletherketone maxillofacial implants

Toward Three‐Dimensional Printed Thermal Conductive Polymeric Composites Using a Binary‐Composite Hybrid Based on Boron Nitride Nanoparticles and Micro‐Diamonds

Interplay between thermal and magnetic properties of polymer nanocomposites with superparamagnetic Fe3O4 nanoparticles

Bolus, bolus positioning system and method of manufacturing the same

Point of care approaches to 3D bioprinting for wound healing applications

Few-layer hexagonal boron nitride/3D printable polyurethane composite for neutron radiation shielding applications

Electrowriting of silk fibroin: Towards 3D fabrication for tissue engineering applications

Assoc. Prof. Stephen Beirne Information

University

Position

Principal Fellow - Australian Institute for Innovative Materials

Citations(all)

4727

Citations(since 2020)

3496

Cited By

2629

hIndex(all)

34

hIndex(since 2020)

29

i10Index(all)

62

i10Index(since 2020)

52

Email

University Profile Page

Google Scholar

Assoc. Prof. Stephen Beirne Skills & Research Interests

Biofabrication

Additive Manufacturing

Additive Fabrication

3D Printing

Wireless Sensing Systems

Top articles of Assoc. Prof. Stephen Beirne

Understanding the relationship between surfing performance and fin design

Scientific Reports

2024/4/16

Evaluation of osseointegration of plasma-treated polyaryletherketone maxillofacial implants

2024/2/6

Toward Three‐Dimensional Printed Thermal Conductive Polymeric Composites Using a Binary‐Composite Hybrid Based on Boron Nitride Nanoparticles and Micro‐Diamonds

Macromolecular Rapid Communications

2023/11

Interplay between thermal and magnetic properties of polymer nanocomposites with superparamagnetic Fe3O4 nanoparticles

Journal of Magnetism and Magnetic Materials

2023/5/23

Bolus, bolus positioning system and method of manufacturing the same

2023/6/15

Point of care approaches to 3D bioprinting for wound healing applications

2023/4/20

Few-layer hexagonal boron nitride/3D printable polyurethane composite for neutron radiation shielding applications

Composites Science and Technology

2023/3/1

Electrowriting of silk fibroin: Towards 3D fabrication for tissue engineering applications

Journal of Applied Polymer Science

2023/1/20

Corrigendum to “Corneal bioprinting using a high concentration pure collagen I transparent bioink”[Bioprinting 28 (2022) e00235](Bioprinting (2022) 28,(S2405886622000458),(10 …

Bioprinting

2023

Corneal bioprinting using a high concentration pure collagen I transparent bioink

Bioprinting

2022/12/1

Novel porous thermosensitive gel electrolytes for wearable thermo-electrochemical cells

Chemical Engineering Journal

2022/12/1

3D Printed Boron Nitride Polyurethane Composites Electroosmotic Pump

2022/11/14

Computational fluid dynamics performance evaluation of grooved fins for surfboards

MRS Advances

2022/7/20

Development of an in situ printing system with human platelet lysate-based bio-adhesive to treat corneal perforations. Transl Vis Sci Technol. 2022; 11 (6): 26

Translational Vision Science & Technology

2022/6/1

Laser sintering approaches for bone tissue engineering

2022/6/9

Melt polymer drawn single and multi-capillary fibre-based electroosmotic pumps

Microfluidics and Nanofluidics

2022/6

Wearable photo‐thermo‐electrochemical cells (PTECs) harvesting solar energy

Macromolecular Rapid Communications

2022/3

3D‐Printed Wearable Electrochemical Energy Devices (Adv. Funct. Mater. 3/2022).

2022/1

Hollow‐fiber melt electrowriting using a 3D‐printed coaxial nozzle

Advanced Engineering Materials

2022/1

O025 Smart polymer implants as an emerging technology for treating airway collapse in obstructive sleep apnea: proof of concept

Sleep Advances: A Journal of the Sleep Research Society

2021/10

See List of Professors in Assoc. Prof. Stephen Beirne University(University of Wollongong)

Co-Authors

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