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(Figure from the network)
The technical development route determined by the GLOBASOL research team is to maximize the absorption and utilization of the full spectrum of solar radiation, not only to increase the solar photovoltaic conversion efficiency but also to increase the solar radiation heat conversion efficiency. Absorption materials are the key to improving the efficiency of solar full-spectrum photothermal energy conversion to electrical energy. The research team adopts a “two-step†strategy to develop innovative sensitized mesoscopic solar cells (SMSCs) based on organic or organic metal dyes and quasi-solid dielectrics. material.
SMSCs can efficiently absorb solar radiation within a wavelength of 750 nanometers, and then pass nanocrystalline technology, also known as quantum dot technology, to efficiently absorb solar radiation at wavelengths of 750-1100 nm. The innovative photonic gap structure design amplifies the absorption of the solar infrared and near-infrared spectrum, and is designed to be a top-level unit of solar cells arranged in series to help absorb most of the transparent, low-energy photons in solar radiation.
For solar radiation above 1100 nm, the research team uses the newly developed thermoelectric conversion materials based on combinations of nanocrystalline, nanowires and amorphous alloys to maintain the best performance in the temperature range of 500-700 Kelvin.
The two new materials were mixed and then lead iodide and iodomethylammonium were added to achieve naturally-occurring symmetrical crystalline structure materials. A new generation of high-efficiency solar cell prototypes developed with new hybrid optoelectronic and thermoelectric material technologies has achieved a solar energy conversion efficiency of over 28%, setting a new world record.
(Original title: The EU's new generation of high-efficiency solar cell technology has been a breakthrough)
GLOBASOL research team develops new solar cell (SMSCs) materials
[China Instrument Network Instrument R&D] The European Union's Seventh R&D Framework Program (FP7) provides 3 million Euros, total R&D investment of 4 million Euros, and supports the EU's 6 member states and associated countries Italy, Spain, Germany, the United Kingdom, Sweden, and Switzerland. Science and technology personnel form the European GLOBASOL research team. Since March 2013, the company has long been dedicated to the research and development of a new generation of high-efficiency solar cell technology.