In a new weekly update for pv magazine, OPIS, a Dow Jones company, provides a quick look at the main price trends in the global PV industry.
Qcells says it will use Lumet’s fine-line metallization technology for its solar cells, for higher efficiency and lower production costs.
The Chinese manufacturer said its new Hi-MO X6 Scientist series has a temperature coefficient of -0.28%/C and a power output ranging from 620 W to 630 W. They rely on the company’s proprietary hybrid passivated back contact (HPBC) cell technology.
The novel heat pump concept combines solar energy with chemical storage and reportedly consume 75% less electricity than conventional heat pumps. The system relies on a battery and a heat storage tank that can be used either separately or simultaneously, depending on the outdoor conditions.
UIS Technologies has commissioned polyurethane (PU) recoating and regrooving solutions for wire guide rollers (WGRs) at Adani’s 2 GW solar ingot-wafer plant in Gujarat, India.
Researchers at the Delft University of Technology have designed an optical filter for the thermal management of IBC photovoltaic modules. The proposed technology can reportedly reduce the cell operating temperature by up to 2.5 C and extend the lifetime of a PV module by up to 2 years.
REC has developed a new series of heterojunction solar panels with efficiencies up to 22.5% and an operating temperature coefficient of -0.24% per degree Celsius.
Renshine Solar says it will open a gigawatt-scale perovskite PV module factory in Jiangsu province, with a planned investment of CNY 1 billion ($138 million). In January, it reported that its perovskite solar panels had achieved a power conversion efficiency of 18.4%.
The German research institute said the new 120 µm thin solar cell could exceed 25% efficiency with the next optimization steps. The device was metalized via screen-printed contact fingers and calibrated by scientists at the Institute for Solar Energy Research Hamelin.
Scientists in South Africa have proposed a new chalcogenide perovskite solar cell design based on a compound known as barium zirconium sulfide. They tested different hole transport materials in the new device and found that a polymer known as P3HT achieved the best performance.
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