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It bends, but does not break: the Italian Institute of Technology develops a new sustainable treatment for shaping wood

The IIT's new treatment makes wood temporarily flexible, allowing for easy shaping, and uses a green solvent derived from cellulose. The method provides a sustainable alternative to current, more polluting or energy-intensive processes, supporting a circular economy.

SourceIstituto Italiano di Tecnologia - IIT·JournalCommunications Materials·TypeExperimental study·DateSep 15, 2026

Thermochromic ZnO coating brings radiative cooling to wood

Researchers developed a thermochromic ZnO coating that improves water repellency, self-cleaning behavior, and UV protection on wood surfaces. The coating reduces solar heat absorption while maintaining thermal radiation, resulting in a 10.4°C surface temperature reduction and 3.3°C average reduction in a model wooden house.

SourceJournal of Bioresources and Bioproducts·JournalJournal of Bioresources and Bioproducts·TypeExperimental study·DateSep 7, 2026

A newly discovered role for tension wood: the “muscle” trees use to correct their posture

Plants use proprioception to control their posture and maintain a straight shape, utilizing tension wood as a muscle-like structure that can bend and straighten. This complex biological process is regulated at the cellular level and unfolds through several stages, governed by the plant's proprioception.

How plants control fleshy and woody tissue growth

Researchers discovered that thermospermine, a small positively charged polyamine molecule, regulates vascular development by promoting the translation of SAC51 transcription factors while inhibiting LHW. This study sheds light on how plants fine-tune their vascular systems to produce soft edible storage organs or rigid woody tissue.

SourceUniversity of Cambridge·JournalScience·TypeExperimental study·DateFeb 12, 2026

Wood becomes a high-strength conductor through metal-based eutectic gels

Researchers introduce a new strategy using natural wood as a structural scaffold for conductive eutectogels, enabling mechanically robust and environmentally stable materials. The resulting eutectogel achieves high tensile strength, toughness, and ionic conductivity, making it suitable for wearable electronics and smart sensing systems.

SourceJournal of Bioresources and Bioproducts·JournalJournal of Bioresources and Bioproducts·TypeExperimental study·DateFeb 4, 2026

Biochar reimagined: Scientists unlock record-breaking strength in wood-derived carbon

Researchers at the University of Toronto have discovered that monolithic biochar can achieve exceptional strength and durability, comparable to mild steel. The study found strong correlations between hardness, bulk density, and carbon content, providing a quantitative foundation for tailoring biochar's performance.

Poplar tree discovery could help shape the future of energy and biomaterials

A University of Missouri-led study has uncovered how poplar trees can naturally adjust a key part of their wood chemistry based on changes in their environment, supporting improved bioenergy production. The discovery sheds light on the role of lignin and its potential to create better biofuels and sustainable products.

SourceUniversity of Missouri-Columbia·JournalProceedings of the National Academy of Sciences·DateAug 18, 2025

Woodn't that be nice

A team of researchers at Kyoto University has developed a simple but effective method for detecting early wood coating deterioration, which can extend the life of wooden structures and improve sustainability. The approach combines mid-infrared spectroscopy with machine learning to predict the extent of deterioration, allowing for early...

SourceKyoto University·JournalJournal of Clinical and Translational Hepatology·TypeObservational study·DateApr 17, 2025

Beyond the burn: Harvesting dead wood to reduce wildfires and store carbon

A study by Florida Atlantic University investigated how removing dead wood could reduce wildfire risks and enhance carbon storage. The research found that combining physical harvesting with thinning significantly reduced wildfire risks, while lowering carbon emissions and offering carbon sequestration through products like biochar.

SourceFlorida Atlantic University·JournalJournal of Environmental Management·TypeObservational study·DateFeb 26, 2025

Magnetic resonance imaging also sheds light on history without destroying fragile finds - Ancient Roman harbor wooden structures analyzed at the University of Oulu, Finland

A recent study used NMR methods to investigate rare 300-century wooden structures from the Roman Empire, shedding light on their history and behavior in water. The analysis revealed valuable insights into the structure and changes of archaeological wood remains, contributing to the preservation of heritage for future generations.

SourceUniversity of Oulu, Finland·JournalPhysical Chemistry Chemical Physics·DateDec 16, 2024

Making the most of Switzerland's wood

Researchers from Swiss Federal Laboratories for Materials Science and Technology (EMPA) conducted a comprehensive material flow analysis of wood in Switzerland to shed light on its availability and usage. The study found that recycling rate for wood is around 8% compared to 70% for paper, highlighting the need for sustainable use.

SourceSwiss Federal Laboratories for Materials Science and Technology (EMPA)·JournalJournal of Industrial Ecology·TypeData/statistical analysis·DateDec 16, 2024

Discovery of 3,775-year-old preserved log supports ‘wood vaulting’ as a climate solution

A University of Maryland-led study found that burying wood in the right environmental conditions can stop its decomposition and help curb carbon dioxide emissions. The researchers analyzed a 3,775-year-old log and surrounding soil, revealing that it had lost less than 5% carbon dioxide thanks to the low-permeability clay soil.

SourceUniversity of Maryland·JournalScience·TypeExperimental study·DateSep 27, 2024

Alternatives in car and aircraft construction: New joining and additive manufacturing processes allow adhesive-free joining of wood and metal

Researchers at Graz University of Technology developed two techniques to join wood with metals and polymer composites without adhesives or screws. The AddJoining technique uses 3D printing to create strong joints, while the Ultrasonic Joining method employs high-frequency vibration to melt polymer into wood pores. These methods show pr...

SourceGraz University of Technology·TypeExperimental study·DateAug 28, 2024

A greener, more effective way to kill termites

Researchers at the University of California - Riverside have discovered a highly effective and nontoxic way to kill western drywood termites using a pleasant-smelling chemical called pinene. The method involves releasing the scent of pinene, which attracts termites and guides them to a spot where insecticide is injected into wood.

SourceUniversity of California - Riverside·JournalJournal of Economic Entomology·DateMay 31, 2024

Hurricanes jeopardize carbon-storing New England forests

A new study reveals that a single hurricane can wipe out 5-10% of New England's total aboveground forest carbon through tree damage. The research team analyzed the impact of 10 powerful hurricanes on the region's forests and found that future storms could pose a significant risk to carbon offset programs.

SourceDartmouth College·JournalGlobal Change Biology·TypeComputational simulation/modeling·DateApr 24, 2024

The first Neolithic boats in the Mediterranean

Excavations at La Marmotta, Italy, uncovered five Neolithic canoes dating between 5700-5100BC, featuring advanced construction techniques. The discovery provides invaluable insights into early navigation and the technological sophistication of ancient communities.

SourcePLOS·JournalPLOS ONE·TypeObservational study·DateMar 20, 2024

Researchers can reveal illegal timber exports

Researchers from the University of Gothenburg developed a new method to identify the origin of harvested trees using chemical footprints in wood tissue. The study focused on Eastern European countries, but the method is applicable worldwide, tackling over half of tropical timber's illegal harvest.

SourceUniversity of Gothenburg·JournalNature Plants·TypeContent analysis·DateMar 14, 2024

Wood condition, root constriction and improper pruning can be used as predictors of urban tree failure

A study in São Paulo's central area found that poor wood condition, sidewalk root constriction, and drastic pruning are major predictors of urban tree failure. The researchers propose guidelines for stakeholders to reduce the number of failures, which average 2,000 per year.

SourceFundação de Amparo à Pesquisa do Estado de São Paulo·JournalUrban Forestry & Urban Greening·DateMar 13, 2024

Wood materials make for reliable organic solar cells

Scientists at Linköping University have created stable and environmentally friendly organic solar cells by incorporating untreated kraft lignin into the electron transport layer. This innovation improves the overall efficiency and reliability of organic solar cells, paving the way for a more sustainable future.

SourceLinköping University·JournalAdvanced Materials·DateDec 6, 2023

Transparent wood-based coating doesn’t fog up

A team of scientists at Aalto University has created a bio-based transparent film from lignin nanoparticles, offering an alternative to toxic synthetic materials. The coating can be used on glasses, windshields, and other surfaces, and also displays coloured films with structural colours.

SourceAalto University·JournalChemical Engineering Journal·DateSep 26, 2023

The building industry and forest diversity and resilience

Researchers advocate for a forest-first approach to specifying timber species in forestry and building practices, emphasizing the need for climate-adaptive strategies. By selecting suitable tree species based on ecological and building traits, builders can create resilient forests and support functional diversity.

SourcePNAS Nexus·JournalPNAS Nexus·DateAug 29, 2023