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View article: Long-term continuous corrosion of 316L stainless steel by Streptococcus mutans in simulated oral environment
Long-term continuous corrosion of 316L stainless steel by Streptococcus mutans in simulated oral environment Open
Introduction The widespread application of metallic biomaterials in oral healthcare has raised increasing concerns regarding their long-term corrosion behavior under complex microbial environments, which remains insufficiently understood. …
View article: Immune regulative GelMA&Zn2+/Ce3+-whitlockite scaffolds with continuous ions release for bone regeneration
Immune regulative GelMA&Zn2+/Ce3+-whitlockite scaffolds with continuous ions release for bone regeneration Open
The complex bone repair microenvironment remains a significant challenge in orthopedics. As pivotal regulators, bioactive metal ions can promote osseointegration by coordinating the bone immune microenvironment. To address this, we enginee…
View article: Riboflavin-mediated extracellular electron transfer enhances microbiologically influenced corrosion of 316L stainless steel by Listeria monocytogenes
Riboflavin-mediated extracellular electron transfer enhances microbiologically influenced corrosion of 316L stainless steel by Listeria monocytogenes Open
316L stainless steel (SS) is commonly used in medical implants due to its outstanding mechanical properties and biocompatibility. However, increasing use of metallic implants has raised concerns about microbiologically influenced corrosion…
View article: Biomolecule-tailored chiral nickel oxide nanozymes amplify autophagy-mediated tumor ablation via synergistic photodynamic-chemodynamic therapy
Biomolecule-tailored chiral nickel oxide nanozymes amplify autophagy-mediated tumor ablation via synergistic photodynamic-chemodynamic therapy Open
Chiral nanomaterial-mediated phototherapy has attracted attention as an emerging tumor treatment method. In this study, we synthesized chiral nickel oxide (L/D-Cys-NiO) photosensitizers via surface modulation using chiral cysteine molecule…
View article: Al/Cu Enhancement in Marine Anti‐Biofouling and Anti‐Biocorrosion Performance of High‐Entropy Alloys
Al/Cu Enhancement in Marine Anti‐Biofouling and Anti‐Biocorrosion Performance of High‐Entropy Alloys Open
Antibacterial alloys are designed to mitigate biofouling, which is a strategy for combining the defense and function properties of alloys in complex biological environments. However, the current approaches are unable to overcome the issue …
View article: Engineered Living Energy Materials
Engineered Living Energy Materials Open
To foster sustainable development, a pivotal trend lies in harnessing sustainable energy supplies that propel modern economic and societal progress. Recent advancements in living materials for energy applications have sparked a groundbreak…
View article: Influence of Shewanella algae and calcium-magnesium deposit layer on the corrosion mechanism of X80 carbon steel in marine environment
Influence of Shewanella algae and calcium-magnesium deposit layer on the corrosion mechanism of X80 carbon steel in marine environment Open
In the marine environment, the surface of X80 steel under cathodic protection is highly prone to forming a dense calcium-magnesium deposit layer and adsorbing a large amount of Shewanella algae (S. algae), thus facing a severe risk of unde…
View article: Harnessing Biofilm Scaffold for Structurally Adaptative Slippery Surfaces with Integrated Antifouling and Anticorrosion Properties
Harnessing Biofilm Scaffold for Structurally Adaptative Slippery Surfaces with Integrated Antifouling and Anticorrosion Properties Open
Artificial liquid‐repellent surfaces are highly desirable to combat pervasive biofouling and corrosion in biological environments. However, existing strategies often suffer from slow binding kinetics and harsh fabrication conditions, hinde…
View article: Influence of multilayer sea sand and Shewanella algae on the corrosion behavior of 316 SS
Influence of multilayer sea sand and Shewanella algae on the corrosion behavior of 316 SS Open
The effects of multilayer sea sand particles of varying sizes and Shewanella algae (S. algae) on the corrosion behavior of 316 stainless steel (SS) were investigated. The findings reveal that in a sterile environment, sand hinders the diff…
View article: An Examination of Internet Use and Its Association With Gender Ideology Among Older Adults: Insights From China
An Examination of Internet Use and Its Association With Gender Ideology Among Older Adults: Insights From China Open
Internet use among older Chinese adults is widespread, but little is known about the correlation between internet use and the evolution of gender ideology among this demographic. Using nationally representative data from the 2017 Chinese G…
View article: Light-driven eosin Y-Ralstonia eutropha biohybrid for CO2 conversion to acetoin via specific photo-induced electron transfer and metabolic engineering
Light-driven eosin Y-Ralstonia eutropha biohybrid for CO2 conversion to acetoin via specific photo-induced electron transfer and metabolic engineering Open
Whole-cell photosynthetic biohybrid systems offer a promising route for CO2 conversion into value-added chemicals. However, many existing systems suffer from inefficient electron transfer to intracellular catalytic CO2 center, which arises…
View article: Accelerated Destruction of Passive Film and Microbial Corrosion of 316 L Stainless Steel via Extracellular Electron Transfer
Accelerated Destruction of Passive Film and Microbial Corrosion of 316 L Stainless Steel via Extracellular Electron Transfer Open
The dense passive film on 316 L stainless steel is the key in its corrosion resistance. Its interactions with an electroactive biofilm are critical in deciphering microbial corrosion. Herein, an in‐depth investigation using genetic manipul…
View article: Insight into a single-chamber air-cathode microbial fuel cell for nitrate removal and ecological roles
Insight into a single-chamber air-cathode microbial fuel cell for nitrate removal and ecological roles Open
Bioelectrochemical systems are sustainable and potential technology systems in wastewater treatment for nitrogen removal. The present study fabricated an air-cathode denitrifying microbial fuel cell (DNMFC) with a revisable modular design …