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Linköping University


Make your own greenhouse gas logger

Researchers at Linköping University developed a simple and cost-efficient logger for measuring greenhouse gases, including methane. The open-source Arduino-based system provides data on methane levels, temperature, humidity, and carbon dioxide, making it easier to monitor emissions locally and globally.

SourceLinköping University·JournalBiogeosciences·DateJul 27, 2020

New bioink for cell bioprinting in 3D

A research group at Linköping University has developed a dynamic bioink that allows cells to survive and thrive during 3D printing. The bioink's properties can be modified as required, enabling the creation of tissue-mimicking materials with tailored functionalities.

SourceLinköping University·JournalBiofabrication·DateJul 13, 2020

Plasma electrons can be used to produce metallic films

Researchers at Linköping University have developed a method to create thin metallic films using free electrons in a plasma, eliminating the need for powerful molecular reducing agents. This innovation enables the production of processors and similar components without the constraints of traditional chemical vapor deposition methods.

SourceLinköping University·JournalJournal of Vacuum Science & Technology A Vacuum Surfaces and Films·DateMay 7, 2020

A cheap organic steam generator to purify water

Researchers at Linköping University have created a cheap and efficient steam generator that uses sunlight to desalinate and purify water. The system utilizes a cellulose-based aerogel structure that absorbs energy from sunlight, resulting in high-quality drinking water production.

SourceLinköping University·JournalAdvanced Sustainable Systems·DateApr 20, 2020

A combined optical transmitter and receiver

Researchers at Linköping University have developed a tiny unit that can both transmit and receive optical signals using perovskite diodes. This innovation has the potential to simplify and shrink optoelectronic systems, particularly in applications requiring low weight, flexibility, or large surfaces.

SourceLinköping University·JournalNature Electronics·DateApr 3, 2020

Stable perovskite LEDs one step closer

Scientists have created a stable perovskite LED with an efficiency of 17.3%, significantly surpassing previous results. The breakthrough composite thin film, made by embedding a perovskite into an organic molecule matrix, has enabled the development of long-lasting LEDs.

SourceLinköping University·JournalNature Communications·DateApr 1, 2020

Artificial intelligence finds disease-related genes

A new study uses artificial intelligence to identify groups of disease-related genes from huge amounts of gene expression data. The researchers found that the AI model discovered relevant patterns that agree well with biological mechanisms in the body, suggesting potential applications in precision medicine and individualized treatment.

SourceLinköping University·JournalNature Communications·DateFeb 13, 2020

Sustainable markets must be created and defended

A conceptual framework has been developed to analyze the creation and shaping of sustainable markets, such as Sweden's biogas market. The framework highlights three key requirements: enabling exchange practices, constructing a narrative about sustainability, and proving the system through reliable evidence.

SourceLinköping University·JournalEnvironmental Innovation and Societal Transitions·DateJan 21, 2020

New method gives robust transistors

Scientists at Linköping University and SweGaN have developed a new method to fit together layers of semiconductors, resulting in high-breakdown thin GaN transistors. The transistors can withstand high voltages due to the gradual absorption of strain between layers.

SourceLinköping University·JournalApplied Physics Letters·DateJan 7, 2020

Diet has rapid effects on sperm quality

A new study by researchers at Linköping University found that a diet rich in sugar can rapidly affect sperm motility and quality. After two weeks of consumption, the sperm motility of all participants became normal, suggesting a close link between diet and fertility.

SourceLinköping University·JournalPLOS Biology·DateDec 27, 2019

Creating switchable plasmons in plastics

Scientists at Linköping University develop optical nanoantennas made from a conducting polymer, allowing for controllable nano-optical components. The antennas react to light and can be switched on and off, making them suitable for applications such as smart windows.

SourceLinköping University·JournalNature Nanotechnology·DateDec 9, 2019

Elusive cancer-related protein captured in flight

Researchers at Linköping University have successfully captured the instantaneous image of the MYC protein bound to TBP, shedding light on its role in cancer. The study reveals that MYC's adaptability and dynamic structure enable it to interact with over 300 proteins, making it a promising target for new cancer therapies.

SourceLinköping University·JournalNature Structural & Molecular Biology·DateNov 4, 2019

Human medicines affect fish behavior

Research reveals that human medicines influencing serotonin and dopamine systems alter the boldness and explorative behaviour of three-spined sticklebacks, highlighting potential consequences for aquatic ecosystems. The study confirms the role of these signal substances in individual personality differences and stress resilience.

SourceLinköping University·JournalJournal of Experimental Biology·DateOct 16, 2019

Antidepressant medications appear to be generally safe

A new study of 45 meta-analyses found that antidepressants are not associated with strong adverse health outcomes, and most reported effects were likely due to underlying psychiatric conditions. The study suggests that antidepressants are generally safe but cautionary measures should still be taken during treatment

SourceLinköping University·JournalJAMA Psychiatry·DateOct 2, 2019

Welcome indoors, solar cells

Researchers at Linköping University have developed organic solar cells that can harness indoor light to produce electricity. The cells achieve high energy efficiency, with some variants converting up to 26.1% of ambient light into electricity.

SourceLinköping University·JournalNature Energy·DateSep 16, 2019

Genetic risk is associated with differences in gut microbiome

A recent study published in Nature Communications found that children with high genetic risk of developing type 1 diabetes have distinct gut microbiomes compared to those with low risk. The research suggests a link between genetic predisposition and environmental factors, highlighting the importance of the gut flora in autoimmune disea...

SourceLinköping University·JournalNature Communications·DateAug 19, 2019

Big city growth escalates the urban-rural divide

A new study challenges the long-held assumption that cities grow in parallel, revealing a widening urban-rural divide and increased regional inequality. The research uses Swedish population registers to analyze city growth trajectories, finding that smaller cities face significant economic shocks and structural changes.

SourceLinköping University·JournalProceedings of the National Academy of Sciences·DateJun 24, 2019

Artificial muscles powered by glucose

Scientists at Linköping University have created artificial muscles that harness energy from glucose and oxygen, mimicking biological muscle movement. The innovation uses enzymes to convert chemical energy into electrical energy, enabling the creation of implantable and autonomous microrobots.

SourceLinköping University·JournalAdvanced Materials·DateJun 19, 2019

Dogs mirror owner's stress

A new study from Linköping University found that dogs and their owners share similar stress levels, with high-stress owners having high-stress dogs. The study examined 25 border collies and 33 Shetland sheepdogs and found no correlation between dog personality traits and stress levels.

SourceLinköping University·JournalScientific Reports·DateJun 6, 2019

A new sensor for light, heat and touch

Researchers at Linköping University developed a sensor that combines pyroelectric and thermoelectric effects with nano-optical phenomena, enabling rapid and stable detection of temperature variations from warm objects or sunlight. The sensor is also pressure-sensitive and can distinguish between different materials.

SourceLinköping University·JournalAdvanced Functional Materials·DateMay 14, 2019