Analysis sees many promising pathways for solar photovoltaic power
New study identifies the promise and challenges facing large-scale deployment of solar photovoltaics.
New study identifies the promise and challenges facing large-scale deployment of solar photovoltaics.
Researchers combine two types of photovoltaic material to make a cell that harnesses more sunlight.
Service to faculty, collaboration with industry are hallmarks of campus-based Materials Processing Center at MIT.
Speakers at 10th annual MIT Energy Conference see progress, but great need for more research.
Tuning energy levels through surface chemistry shows promise for higher efficiency quantum dot solar cells, MIT graduate student Patrick R. Brown's work shows.
MIT's associate dean for innovation is inventing at the nanoscale.
First report of Comprehensive Initiative on Technology Evaluation offers new framework for assessment.
Mechanical engineering professor pursues a vision of a cleaner, more energy-efficient world.
EGG Energy brings solar-powered electricity to rural Tanzania, improving quality of life and the environment.
MIT study finds unprecedented production of metals needed to meet some solar energy goals.
New system aims to harness the full spectrum of available solar radiation.
Cheaper, longer-lasting materials could enable batteries that make wind and solar energy more competitive.
Theorists find a new way to improve efficiency of solar cells by overcoming exciton “traps.”
Off-grid Indian communities with salty groundwater could get potable water through a proposed solar technique.