U.S.-based PeroNova is specialized in metal halide perovskite-silicon tandem solar cells made with its novel stability-enhancing interfacial treatment. It is targeting a range of applications including space and rooftop markets. PeroNova, a U.S.-based startup specializing in solar perovskite technologies, has developed a solar perovskite module for building-integrated photovoltaics (BIPV) and space applications. “Our novel interfacial treatment technology enhances the stability and reliability of perovskite films in tests, and in fabrication conditions. Thermal cycling resistivity tests demonstrated over 80% of initial power conversion efficiency after 2,500 cycles,” a PeroNova spokesperson told pv magazine. Want to read more? Check out the link in the comment below 👇 #Renewables #Energy #Technology
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Heliatek, a revolution in photovoltaics Heliatek's self-adhesive solar panels transform any surface into a power source, revolutionizing energy production by utilizing flexible, sun-exposed materials. What are your thoughts? #innovation #renewable #solarpower #technology #futurism Source: Heliatek
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🇦🇿Alman startapı yüksək effektivliyə (26.9 %) malik, 25 kg ağırlığı və 1.57 m2 sahəsi olan solar modul istehsal edib. Bu modulların başqa üstün tərəfi, istehsalı üçün bahalı materiallara ehtiyacın olmamasıdır. 🇬🇧German clean energy startup has developed highly efficient solar module (perovskite) with the record of 26.9 %. It is a next generation module with 25 kg and 1.57 m2 being a good solution for household installtions. Moreover, perovskite photovoltaics present a low-cost, thin-film solution utilizing widely available and inexpensive source materials. Their production involves simple manufacturing processes, making them an economically viable option for large-scale solar energy deployment. 🔆 More⤵️ #solarmodule #highefficientmodul #renewableenergy #photovoltaics
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Shingle matrix is synonymous with superior connection technology for solar cells. It is aimed at achieving high module efficiencies, enhanced product aesthetics, and outstanding shading resilience. These are all important properties, especially in integrated photovoltaics (xIPV). The uniqueness of shingle matrix technology clearly stands out in a market with a very homogeneous product range. The technology has unique selling points. However, with a view to remaining competitive in terms of manufacturing costs, highly automated and powerful throughput system technology is required for the economical production of such solar modules. M10 Solar Equipment GmbH provides the plant technology for solar module production, while consistently focusing on new concepts to achieve the necessary machine throughputs. #solar #solarinnovation #pv #pvtech #photovoltaic #manufacturing #integratedphotovoltaics #technology #innovation #energy PES Solar M10 Solar Equipment GmbH Nils Klasen Marco Saladin Philipp Zahn Stuart Gillies PES Solar/PV publications
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📌 In IBC4EU we are working on overcoming barriers for market entry of EU-produced low-cost high-efficiency #bifacial #IBC technology by proposing targeted interventions leading to significant cost reductions along the value chain. 📌 With lowest production costs and lowest environmental footprint will be demonstrated by #IBC4EU, IBC technology will become the winning PV technology for investing into #GW scale #PVproduction as well as for the building of PV power plants for all market segments starting from BIPV and supporting the Renovation Wave up to utility-scale PV. Our team: ISC Konstanz TNO Energy Transition - Solar Energy ISFH – Institut für Solarenergieforschung Hameln CEA FuturaSun Kalyon PV Copprint Centrotherm Clean Tech, Inc. RENA Technologies GmbH imec Energyra Europe Toyal Europe WIP Renewable Energies LuxChemtech GmbH Becquerel Institute Applied Research Institute for Prospective Technologies (Protech) NorSun
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As the demand for lithium-ion batteries continues to rise, driven by the growing adoption of electric vehicles and the integration of 𝗿𝗲𝗻𝗲𝘄𝗮𝗯𝗹𝗲 𝗲𝗻𝗲𝗿𝗴𝘆 𝘀𝗼𝘂𝗿𝗰𝗲𝘀, concerns have arisen regarding the availability and affordability of crucial raw materials. The escalating trend in raw material prices observed in recent years further underscores the pressing need to explore alternatives that capitalize on readily available and more uniformly distributed resources while maintaining comparable performance. 🚘🌱🌞 In response to these challenges, researchers have actively explored diverse materials as potential 𝗮𝗹𝘁𝗲𝗿𝗻𝗮𝘁𝗶𝘃𝗲𝘀 𝘁𝗼 𝗹𝗶𝘁𝗵𝗶𝘂𝗺-𝗶𝗼𝗻 𝗯𝗮𝘁𝘁𝗲𝗿𝗶𝗲𝘀. 🔋🚫 In this Application Note we show how 𝘁𝗵𝗲𝗿𝗺𝗼𝗮𝗻𝗮𝗹𝘆𝘁𝗶𝗰𝗮𝗹 𝘁𝗲𝗰𝗵𝗻𝗶𝗾𝘂𝗲𝘀 𝗮𝗿𝗲 𝗰𝗮𝗽𝗮𝗯𝗹𝗲 𝗼𝗳 𝗰𝗼𝗻𝘁𝗿𝗶𝗯𝘂𝘁𝗶𝗻𝗴 𝘁𝗼 𝘁𝗵𝗲 𝗶𝗻𝘃𝗲𝘀𝘁𝗶𝗴𝗮𝘁𝗶𝗼𝗻 𝗼𝗳 𝗲𝗺𝗲𝗿𝗴𝗶𝗻𝗴 𝗺𝗮𝘁𝗲𝗿𝗶𝗮𝗹𝘀 𝗳𝗼𝗿 𝗯𝗮𝘁𝘁𝗲𝗿𝗶𝗲𝘀. 👨🔬 Learn about the determination of the amount of active material in innovative battery materials by means of Thermogravimetric Analysis (TGA)🔬💡 #NETZSCH #ProvenExcellence #ThermalAnalysis #TGA #greenenergy #renewables #batteries
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TERASUN is a project that aims to develop new possibilities in the solar energy sector🌞 by providing a strategic roadmap 🗺️ to mass-produce high-efficiency photovoltaic (PV) devices, leading to significant production cost savings 💰 and better Levelized Cost of Energy (LCOE) for PV systems. Recognizing the critical LCOE factors: PV module Power Conversion Efficiency (PCE) ⚡, costs (including production, installation, and maintenance) , and system lifetime ⏳. TERASUN is committed to enhancing these areas. The initiative places a special focus on boosting PCE and minimizing manufacturing costs 💵 from the early development stages, while also assessing the impact of specific advancements on the longevity of both cells and modules 🔋. Wanna meet our consortium? Check their LinkedIn pages! IDENER.AI Fraunhofer-Institut für Solare Energiesysteme ISE PV2+ GmbH Commissariat a l'Energie Atomique et aux Energies Alternatives Delft University of Technology RINA
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Great method if you work with battery materials. Hint: it’s the vacuum tightness that only Netzsch offers.
As the demand for lithium-ion batteries continues to rise, driven by the growing adoption of electric vehicles and the integration of 𝗿𝗲𝗻𝗲𝘄𝗮𝗯𝗹𝗲 𝗲𝗻𝗲𝗿𝗴𝘆 𝘀𝗼𝘂𝗿𝗰𝗲𝘀, concerns have arisen regarding the availability and affordability of crucial raw materials. The escalating trend in raw material prices observed in recent years further underscores the pressing need to explore alternatives that capitalize on readily available and more uniformly distributed resources while maintaining comparable performance. 🚘🌱🌞 In response to these challenges, researchers have actively explored diverse materials as potential 𝗮𝗹𝘁𝗲𝗿𝗻𝗮𝘁𝗶𝘃𝗲𝘀 𝘁𝗼 𝗹𝗶𝘁𝗵𝗶𝘂𝗺-𝗶𝗼𝗻 𝗯𝗮𝘁𝘁𝗲𝗿𝗶𝗲𝘀. 🔋🚫 In this Application Note we show how 𝘁𝗵𝗲𝗿𝗺𝗼𝗮𝗻𝗮𝗹𝘆𝘁𝗶𝗰𝗮𝗹 𝘁𝗲𝗰𝗵𝗻𝗶𝗾𝘂𝗲𝘀 𝗮𝗿𝗲 𝗰𝗮𝗽𝗮𝗯𝗹𝗲 𝗼𝗳 𝗰𝗼𝗻𝘁𝗿𝗶𝗯𝘂𝘁𝗶𝗻𝗴 𝘁𝗼 𝘁𝗵𝗲 𝗶𝗻𝘃𝗲𝘀𝘁𝗶𝗴𝗮𝘁𝗶𝗼𝗻 𝗼𝗳 𝗲𝗺𝗲𝗿𝗴𝗶𝗻𝗴 𝗺𝗮𝘁𝗲𝗿𝗶𝗮𝗹𝘀 𝗳𝗼𝗿 𝗯𝗮𝘁𝘁𝗲𝗿𝗶𝗲𝘀. 👨🔬 Learn about the determination of the amount of active material in innovative battery materials by means of Thermogravimetric Analysis (TGA)🔬💡 #NETZSCH #ProvenExcellence #ThermalAnalysis #TGA #greenenergy #renewables #batteries
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Step into the future of solar energy with 𝗛𝗶-𝗠𝗢 𝗫𝟲 𝗠𝗔𝗫 panels: a fusion of power and unparalleled performance! ✨🌟 Born from LONGi's pioneering research and breakthrough cell technologies, these panels boast state-of-the-art 𝗠𝟭𝟭 𝗰𝗲𝗹𝗹𝘀 and innovative TaiRay technology. The result? A remarkable 30-watt increase in power output, reaching up to 630 watts, with an exceptional conversion efficiency of over 𝟮𝟯.𝟯%. But it's not just about power. These panels redefine excellence with an annual degradation rate of less than 1% and an ultra-low temperature coefficient of less than 𝟬.𝟮𝟴% per degree Celsius. Discover the next evolution in solar technology with #HiMOX6MAX.
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📝ARTICLE OF THE WEEK📝 📈LONGi maintains AAA rating in PV ModuleTech bankability ratings for Q2 2024⭐ LONGi Solar has maintained its AAA ranking in PV-Tech's Q2 2024 PV ModuleTech bankability ratings for the 18th consecutive quarter. This achievement underscores LONGi's consistent excellence across key metrics such as value chain strength, production capacities, global shipments, and financial performance. Our commitment to innovation is evident through significant investments in R&D and the launch of groundbreaking products like the TaiRay silicon wafer, HPBC 2.0, Hi-MO 9, and Hi-MO X6 Max. These advancements showcase our expertise in silicon wafer and cell technology, particularly in back contact (BC) technology.🚀 We have also set multiple world records for solar cell efficiency in 2024, including: ✅27.30% efficiency for silicon heterojunction back-contact (HBC) cells ✅30.1% efficiency for commercial M6 size wafer-level silicon-perovskite tandem cells ✅34.6% efficiency for tandem cell technology These achievements highlight LONGi's leadership in pushing the boundaries of solar cell efficiency and advancing the commercial viability of cutting-edge technologies in the renewable energy sector. 🔗Check out the full article in 🇪🇸: https://lnkd.in/ebYdQVQj #SolarEnergy #PVModuleTech #SolarEfficiency #Bankability #TechLeadership Hugo Fernandez Pau Borredá Ricart Patricia Zaccagnini Boris Timo Helmke Review Energy
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As TOPCon solar cell technology continues to advance, manufacturers are increasingly concerned about performance losses at the laser-split edges of (half) cells. To mitigate these losses, several companies are exploring edge passivation solutions. Leadmicro has gone a step further by developing deposition and thermal processing tools that support half-cell processing, effectively eliminating bottlenecks in the production line for half-cell processing. Baochen Liao, Chief Scientist (Professor) at Leadmicro, took part in #Day3 of the TaiyangNews High Efficiency Solar Technologies #VirtualConference #Part2, which is spread across 2 days - Dec. 10/11, 2024. #SolarTechnologies #HighEfficiencySolarTechnologies #SolarPV #SolarEnergy #Solar
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