Add BrightSurf on Google Email

Self-cleaning fuel cells? Researchers reveal steam-powered fix for ‘sulfur poisoning’

University of Utah researchers have discovered a steam-enabled self-cleaning mechanism that dramatically improves sulfur tolerance in solid oxide fuel cell anodes. The addition of rhodium leads to the formation of bimetallic nanoparticles that actively resist sulfur poisoning and autonomously regenerate under steam exposure.

SourceUniversity of Utah·JournalJournal of the American Chemical Society·TypeExperimental study·DateMar 3, 2026

Designing a sulfur vacancy redox disruptor for photothermoelectric and cascade‑catalytic‑driven cuproptosis–ferroptosis–apoptosis therapy

Researchers develop biodegradable Cu2MnS3-x-PEG/glucose oxidase nanosheets for photothermoelectric and cascade-catalytic-driven cuproptosis-ferroptosis-apoptosis therapy. This work offers a blueprint for next-generation nanotherapies, integrating energy conversion, metabolic interference, and immune activation.

SourceShanghai Jiao Tong University Journal Center·JournalNano-Micro Letters·TypeExperimental study·DateSep 15, 2025

From beam to battery: HKUST’s single-step laser printing supercharges high-performance lithium-sulfur batteries

Researchers developed a novel single-step laser printing technique to manufacture integrated sulfur cathodes, resulting in high-performance lithium-sulfur batteries. The process reduces time and complexity compared to traditional methods, enabling faster and more efficient production.

SourceHong Kong University of Science and Technology·JournalNature Communications·TypeExperimental study·DateApr 23, 2025

Metal-valence-state modulation of transition metal oxides boosts lithium–sulfur battery performance

Researchers developed a CuO catalyst that enhances lithium–sulfur battery performance by regulating Li-bond chemistries and reducing sulfur conversion kinetics. The study demonstrates exceptional catalytic performance under harsh operating conditions, showcasing the potential of CuO as an earth-abundant alternative to precious metals.

SourceParticuology·JournalParticuology·TypeExperimental study·DateMar 26, 2025

Whose air quality are we monitoring?

Researchers found systemic monitoring disparities for six major pollutants across US Census groups, with Native Hawaiians and Pacific Islanders facing the largest gaps. The study highlights the need to consider biases in datasets beyond algorithmic bias.

SourceUniversity of Utah·JournalJAMA·TypeData/statistical analysis·DateMar 18, 2025

Single-cell elemental analysis using Inductively Coupled Plasma Mass Spectrometry (ICP-MS)

Scientists from Chiba University successfully analyzed human chronic myelogenous leukemia cells using a new sample introduction system, achieving accurate elemental composition measurements without damaging the cells. The study expands the potential of ICP-MS technology for mammalian cultured cell analysis.

SourceChiba University·JournalJournal of Analytical Atomic Spectrometry·TypeExperimental study·DateJan 22, 2025

Researchers unlock probable hot spots for critical metals

New research from Macquarie University identifies the probable locations and mechanisms of accumulations of critical metals at the margins of old cores of continents. These areas have been found to contain more sulfur and copper than elsewhere on the continents, making them potential targets for future exploration activities.

SourceMacquarie University·JournalNature·TypeExperimental study·DateJan 8, 2025

Potential culprit identified in lingering Crohn’s disease symptoms

A study by Michigan Medicine researchers suggests that sulfur-producing bacteria may be behind lingering Crohn's disease symptoms, even in the absence of inflammation. The study found that these bacteria can lead to increased visceral hypersensitivity and altered intestinal permeability, contributing to persistent symptoms.

SourceMichigan Medicine - University of Michigan·JournalInflammatory Bowel Diseases·TypeObservational study·DateDec 19, 2024

Unlocking the journey of gold through magmatic fluids

A UNIGE team has demonstrated that sulphur in its bisulphide (HS- ) form plays a critical role in transporting gold in magmatic fluids. The study uses innovative methodology to replicate extreme pressure and temperature conditions, providing new insights into the formation of precious metal ore deposits.

SourceUniversité de Genève·JournalNature Geoscience·TypeNews article·DateDec 16, 2024

Researchers observe highly excited ‘roaming’ energy pathway in chemical reactions

Chemical reactions were long thought to occur along minimum energy paths. However, researchers have now observed 'roaming' reactions that stray from this path even in highly excited energy states. This discovery has significant implications for understanding atmospheric chemistry and the production of molecular oxygen.

Geoengineering may slow Greenland ice sheet loss

Researchers found that injecting aerosols into the stratosphere can reduce ice sheet loss by up to 37.6 mm sea-level rise, slowing global warming's effects. However, geoengineering addresses only symptoms, not root causes, and may delay necessary changes.

SourceHokkaido University·JournalJournal of Geophysical Research Earth Surface·TypeComputational simulation/modeling·DateJan 30, 2024

Rice scientists pull off quantum coup

Researchers at Rice University have discovered a new material that exhibits both quantum correlations and geometric frustration, resulting in a unique flat band structure. This finding provides empirical evidence of the effect in a 3D material and has implications for understanding exotic features in materials science.

SourceRice University·JournalNature Physics·TypeExperimental study·DateJan 29, 2024

Sulfur-cycling microbes could lead to new possibilities in river-wetland-ocean remediation

Researchers propose a conceptual framework for understanding the diversity and composition of sulfur-cycling microbes in river-wetland-ocean continuum. They recommend developing new cultivation methods and studying life strategies, communities, and adaptations to improve ecosystem functioning through microbiome engineering.

SourceOcean-Land-Atmosphere Research (OLAR)·JournalOcean-Land-Atmosphere Research·TypeLiterature review·DateDec 5, 2023

North Atlantic’s marine productivity may not be declining, according to new study of older ice cores

A new study by the University of Washington challenges previous findings of declining phytoplankton in the North Atlantic. The researchers analyzed an ice core from central Greenland and found that human-generated pollutants changed the atmosphere's chemistry, offsetting a decrease in marine productivity.

SourceUniversity of Washington·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateNov 13, 2023

Analysis finds diversity on the smallest scales in sulfur-cycling salt marsh microbes

Researchers analyzed DNA sequenced datasets of microbes collected from salt marsh sites to study the relationship between cordgrasses and sulfur-cycling microbes. They found diverse microbial communities with varying combinations of genes for sulfate reduction and sulfur oxidation, allowing them to thrive in salt marsh sediments.

SourceMarine Biological Laboratory·JournalApplied and Environmental Microbiology·TypeData/statistical analysis·DateOct 26, 2023

Revolutionizing energy storage: Metal nanoclusters for stable lithium–sulfur batteries

Researchers have developed a metal nanocluster-based separator for lithium-sulfur batteries, accelerating electrochemical kinetics and improving capacity and cycling stability. The technology has the potential to increase the adoption of sustainable energy storage systems, including electric vehicles and renewable energy.

SourceTokyo University of Science·JournalSmall·TypeExperimental study·DateOct 12, 2023

Oxygen production from volcanic sulfur dioxide photochemistry: a possible trigger for earth's great oxidation event

Scientists discovered oxygen production from vacuum ultraviolet photodissociation of sulfur dioxide, a possible trigger for the Earth's Great Oxidation Event. The study found that this process contributed to transient oxygen accumulation in the primitive atmosphere.

SourceDalian Institute of Chemical Physics, Chinese Academy Sciences·JournalChemical Science·TypeCommentary/editorial·DateAug 31, 2023

Scientists detect seismic waves traveling through Martian core for the first time

Researchers used NASA InSight data to directly measure Mars' core properties, finding a completely liquid iron-alloy core with high percentages of sulfur and oxygen. This discovery provides new insights into Martian formation and geological differences between Earth and Mars, potentially impacting planetary habitability.

SourceUniversity of Maryland·JournalProceedings of the National Academy of Sciences·TypeData/statistical analysis·DateApr 24, 2023

Turning a poison into food

Researchers at the Max Planck Institute for Marine Microbiology reveal how a specific enzyme, Fsr, converts sulfite into sulfide, allowing methanogens to grow safely on toxic substances. This discovery opens opportunities for biotechnological applications and provides insights into the evolution of these microorganisms.

SourceMax Planck Institute for Marine Microbiology·JournalNature Chemical Biology·DateJan 19, 2023

Scientists fabricated highly long-life Li-S batteries based on multifunctional separators functionalized by porous mediators

Researchers fabricated Li-S batteries with ultra-long cycle life over 2000 cycles via multifunctional separator design. The novel hollow and hierarchically porous Fe3O4 nanospheres effectively regulate LiPSs behavior, achieving high sulfur utilization and excellent electrochemical performances.

SourceInternational Journal of Extreme Manufacturing·JournalInternational Journal of Extreme Manufacturing·DateDec 15, 2022

Modulating MoSe2 functional plane via doping-defect engineering strategy to develop conductive and electrocatalytic mediators in Li-S batteries

Researchers developed a conductive and electrocatalytic mediator for Li-S batteries by modulating the MoSe2 functional plane through doping-defect engineering. This approach improves lithium polysulfide adsorption, reducing the shuttle effect and enhancing overall battery performance.

Brushing thin films onto electrodes preserves batteries

Researchers at Rice University have developed a method to create a thin film coating on lithium anodes using powder brushing, which improves battery life and capacity. The coated anodes retained 70% more capacity after 340 charge-discharge cycles than off-the-shelf batteries.

SourceRice University·JournalAdvanced Materials·TypeExperimental study·DateAug 22, 2022

First global map of cargo ship pollution reveals effects of fuel regulations

A new study used satellite data to determine the effect of fuel regulations on sulfur pollution from cargo ships. The research team found significant changes in pollution after regulations went into effect, and their data can contribute to understanding how pollutants interact with clouds and affect global temperatures.

SourceUniversity of Maryland Baltimore County·JournalScience Advances·TypeData/statistical analysis·DateAug 2, 2022

These energy-packed batteries work well in extreme cold and heat

Researchers at the University of California San Diego have developed temperature-resilient lithium-ion batteries with high energy density, compatible with high-temperature operation. These batteries could enable electric vehicles to travel farther on a single charge in cold climates and reduce overheating in hot climates.

SourceUniversity of California - San Diego·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateJul 4, 2022