Harnessing quantum states that avoid thermalization enables energy harvesters to surpass traditional thermodynamic limits ...
A team of researchers from the University of Minnesota Twin Cities College of Science and Engineering and the University of ...
The need to transition away from fossil fuels to more sustainable energy production is critical. That's why a team of researchers is looking at a potential power source that not only produces no ...
Scientists directly observed dark excitons in atomically thin materials, revealing how they evolve and paving the way for ...
Scientists at OIST have, for the first time, directly tracked the elusive “dark excitons” inside atomically thin materials.
Imagine using just a flicker of sunlight to break stubborn chemical bonds that once required intense energy or toxic chemicals to split. This may sound almost impossible, but chemists at the Hong Kong ...
A better understanding of how electrons convert energy into photons could lead to designing more efficient solar cells or better phototherapies for cancer. Researchers looking into the process have ...
The photoelectric effect, first explained in 1905, transformed our understanding of how light interacts with matter. When high-energy light hits atoms, it knocks electrons loose. This process powers ...
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