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A few days ago, media reported that Chinese researchers have developed high-conversion perovskite photovoltaic cells
.
It is said that through new material research and development and process innovation, researchers have increased the conversion efficiency of perovskite solar cell large-area modules to 16%.
This data is currently the highest conversion rate of perovskite solar modules, and has been certified by international authorities and included in the "Solar Cell Efficiency Record Table
".
Network picture
According to reports, the photoelectric conversion rate of 16% is close to the efficiency
of mainstream solar cell modules in the market.
The raw materials used in the synthetic perovskites are common metal salts, with a wide range of sources, and there is no need for high temperature and high pressure environment in the preparation of the battery, and no toxic and harmful gases
are produced.
In addition, after expanding the production scale, the manufacturing cost of perovskite solar cells is expected to reach 1/3 to 1/5
of the current solar cell cost.
It is reported that this study was completed
by Hangzhou Fiberna Optoelectronics Technology Co.
, Ltd.
The company was founded
in Hangzhou by three post-80s returnees.
The perovskite battery module developed by the team has an area of 16 square centimeters, is film-like, and can be bent on a large scale, which can not only be printed on the glass surface to prepare glass-based solar energy, but also attached to the surface of gentle materials and used in wearable electronic devices
.
Industry authoritative experts said that this achievement will strongly promote the commercialization of perovskite solar cells
.
The Solar Cell Efficiency Record Sheet, jointly compiled by authoritative scholars in Australia and the United States, records the world's highest efficiency of different types of photovoltaic cells and modules, and is published every
six months.
At present, the research data has been published in the authoritative journal "Photovoltaic Progress: Research and Application"
in the photovoltaic field on June 21.
A few days ago, media reported that Chinese researchers have developed high-conversion perovskite photovoltaic cells
.
It is said that through new material research and development and process innovation, researchers have increased the conversion efficiency of perovskite solar cell large-area modules to 16%.
This data is currently the highest conversion rate of perovskite solar modules, and has been certified by international authorities and included in the "Solar Cell Efficiency Record Table
".
Network picture
According to reports, the photoelectric conversion rate of 16% is close to the efficiency
of mainstream solar cell modules in the market.
The raw materials used in the synthetic perovskites are common metal salts, with a wide range of sources, and there is no need for high temperature and high pressure environment in the preparation of the battery, and no toxic and harmful gases
are produced.
In addition, after expanding the production scale, the manufacturing cost of perovskite solar cells is expected to reach 1/3 to 1/5
of the current solar cell cost.
It is reported that this study was completed
by Hangzhou Fiberna Optoelectronics Technology Co.
, Ltd.
The company was founded
in Hangzhou by three post-80s returnees.
The perovskite battery module developed by the team has an area of 16 square centimeters, is film-like, and can be bent on a large scale, which can not only be printed on the glass surface to prepare glass-based solar energy, but also attached to the surface of gentle materials and used in wearable electronic devices
.
Industry authoritative experts said that this achievement will strongly promote the commercialization of perovskite solar cells
.
The Solar Cell Efficiency Record Sheet, jointly compiled by authoritative scholars in Australia and the United States, records the world's highest efficiency of different types of photovoltaic cells and modules, and is published every
six months.
At present, the research data has been published in the authoritative journal "Photovoltaic Progress: Research and Application"
in the photovoltaic field on June 21.