Development of surfaces with antibacterial durability through combined S phase plasma hardening and athermal femtosecond laser texturing

B Dashtbozorg, P Penchev, JM Romano, X Li… - Applied Surface …, 2021 - Elsevier
Antibacterial textures provide an attractive solution to the problem of cross contamination of
foods and healthcare-acquired infections that regularly affect the food and medical …

Influence of ns laser texturing of AISI 316L surfaces for reducing bacterial adhesion

L Romoli, G Lazzini, AHA Lutey, F Fuso - CIRP Annals, 2020 - Elsevier
Nanosecond pulsed laser texturing has been performed on stainless steel with the objective
of developing surface treatments to reduce bacterial adhesion on mechanical components …

[HTML][HTML] Picosecond laser treatment production of hierarchical structured stainless steel to reduce bacterial fouling

FH Rajab, CM Liauw, PS Benson, L Li… - Food and bioproducts …, 2018 - Elsevier
The design of surfaces that prevent biofouling through their physical structure and chemical
properties provides a potential solution to increase their hygienic status. A picosecond laser …

A study on the effect of ultrashort pulsed laser texturing on the microstructure and properties of metastable S phase layer formed on AISI 316L surfaces

B Dashtbozorg, X Li, JM Romano, A Garcia–Giron… - Applied Surface …, 2020 - Elsevier
Austenitic stainless steels (ASS) are an important material within the food and medical
industries. However, their current limitations of poor wear resistance and susceptibility to …

[HTML][HTML] Development of antibacterial steel surfaces through laser texturing

VM Villapún, AP Gomez, W Wei, LG Dover… - APL Materials, 2020 - pubs.aip.org
The aim of the present study was to develop novel antibacterial touch surfaces through the
laser texturing optimization of stainless steel. A wide range of laser fluence (2.11 J/cm 2 …

Antibacterial and corrosion studies on nanosecond pulse laser textured 304 L stainless steel surfaces

RK Gupta, B Anandkumar, A Choubey… - Lasers in Manufacturing …, 2019 - Springer
The present paper describes results of study on surface texturing of 304 L stainless steel
with 1064 nm Nd: YAG laser having average power of 15 W, pulse width of 100 ns, scan rate …

Picosecond Laser Surface Micro/Nano Texturing of Stainless Steel as a Method to Reduce the Adhesion of Bacteria.

F Rajab, PS Benson, L Li… - … of LPM2017-the 18th …, 2017 - e-space.mmu.ac.uk
Biofilm formation and colonization is initiated by bacterial attachment followed by bacterial
adhesion and retention on a surface. The buildup of biofilms may result in related health …

[HTML][HTML] Towards laser-textured antibacterial surfaces

AHA Lutey, L Gemini, L Romoli, G Lazzini, F Fuso… - Scientific reports, 2018 - nature.com
Escherichia coli and Staphylococcus aureus bacterial retention on mirror-polished and
ultrashort pulse laser-textured surfaces is quantified with a new approach based on ISO …

[HTML][HTML] Size matters: how periodicity and depth of LIPSS influences E. coli adhesion on ferritic stainless steel

J Outón, M Carbú, M Domínguez… - Applied Surface …, 2024 - Elsevier
Bacterial adhesion is a serious problem in the healthcare and food industries, causing
health problems and economic losses. This study evaluates the generation of Laser-Induced …

[HTML][HTML] Nanosecond laser fabrication of hydrophobic stainless steel surfaces: The impact on microstructure and corrosion resistance

M Rafieazad, JA Jaffer, C Cui, X Duan, A Nasiri - Materials, 2018 - mdpi.com
Creation of hydrophobic and superhydrophobic surfaces has attracted broad attention as a
promising solution for protection of metal surfaces from corrosive environments. This work …