Although current efficiencies for solar cells based on kesterite do not exceed 12.6%, the use of germanium may enable the development of cells with a higher energy band gap.
The group of scientists has identified a new process by which holes get trapped in nanoparticles made of zinc oxide.
The research team believes that the new technology may resolve technical problems and drastically reduce the manufacturing cost of the lift-off process in the production of thin film monocrystalline solar cells.
The Chinese Ministry of Industry in Beijing has issued new guidelines for the solar PV industry. These urge Chinese manufacturers to invest at least 10 million yuan annually into research and development.
The Topsector Energie scheme, which will also support all kinds of innovative energy projects, has a budget of €130 million for 2018.
Finnish scientists have found that only one third of tests reported the intensities of visible and UV light, humidity and temperature adequately.
The Institute for Solar Energy Research Hamelin (ISFH) and the Leibniz Universität Hannover claim that this result is a world record for p-type silicon material, as well as a European record for crystalline silicon.
The pilot project will be developed over the next three years and will utilize standard PV modules. The consortium expects the solar array to have a 15% higher yield compared to traditional installations.
Contrary to common belief, holes in perovskite films may not always negatively affect the performance of perovskite-based solar cells, according to recent research from the Helmholtz Zentrum Berlin (HZB).
Halogens have proved to be very successful in accelerating the electron transfer between the electrolyte and the semiconductor.
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