
How a molecular grip helps perovskite solar cells trap more power
Adding a chemical layer called MGDA beneath solar films anchors moving molecules, creating smoother crystals and boosting efficiency up to 25.50%.
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Adding a chemical layer called MGDA beneath solar films anchors moving molecules, creating smoother crystals and boosting efficiency up to 25.50%.

Scientists have packed tiny, liquid-filled capsules into a solid battery electrolyte that burst open during extreme heat to actively smother flames. This two-part safety shield stops catastrophic battery fires while still letting the cell store and deliver power normally.

A hybrid machine learning model sorted 20,758 health profiles with over 90% test accuracy to identify key obesity risk factors. The model found that dietary choices ranked higher in importance than screen time or physical activity.

A computer-modelling study shows that strategically picking land for Indonesia's community forests can double their combined benefits for climate, wildlife, and poverty alleviation compared to handing out permits at random.

Computer models show that pulling carbon from the air alongside cheap renewable power could cool Earth to 1.0°C for only 0.25% extra global income.

A computer modelling study shows that placing electrical charges on hollow organic cages creates oriented electric fields that speed up chemical reactions up to 100-fold.

Computer simulations show that under high greenhouse gas emissions, marine heatwaves could become almost permanent across most oceans by 2070. These extreme thermal spikes speed up energy loss and amplify the damage of steady ocean warming on marine food webs.

Lab tests show gas bubbles stuck tightly to liquid metal drops in molten young worlds, dragging atmospheric elements down deep inside them.

A global climate study shows that the largest ocean waves can increase in height even when everyday average sea conditions drop. This divergence puts over 60 percent of the world's coastlines at risk of unexpected storm hazards.

Moving the endangered conifer Cathaya argyrophylla into a botanical garden changes the surrounding soil microbes, revealing a rise in genes tied to immune disruption.