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New discovery paves the way for more efficient perovskite solar cells

Researchers from University of Texas have used computational methods to study the formation of polarons in halide perovskites. The findings revealed topological vortices in polaron quasiparticles.

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Hydronic closed-loop cooling system for photovoltaic modules

An international research team has developed a closed-loop PV cooling system that can reportedly offer 24-hour continuous operation. The system is claimed to be particularly suitable for hot and arid regions and to improve the lifespan of solar panels by up to 8.2%.

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Solar panels could raise value of houses by up to 7.1%

Using a range of machine-learning techniques, a group of scientists found that PV systems can significantly increase the value of a property in the United Kingdom. The analysis was based on property data from Zoopla, one of the leading providers of UK property listings, and price paid data sourced from the government’s Land Registry from 2012-2018.

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Quantum algorithm for photovoltaic maximum power point tracking

Researchers have developed a quantum particle swarm optimization algorithm for maximum power point tracking that reportedly generates 3.33% more power in higher temperature tests and 0.89% more power in partial shading tests compared to conventional swarm optimization algorithms.

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New grid connection rules in Romania

The Romanian Energy Regulatory Authority (ANRE) has adopted several changes to grid connection processes, including the implementation of an auction-based grid connection mechanism for plants above 5 MW from 2026 onwards.

U.S. startup develops 28%-efficient perovskite-silicon tandem solar module

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.

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Increasing voltage in cadmium telluride solar cells through nickel oxide back buffer layer

Cadmium telluride solar cells are commonly based on non-ohmic back contacts that affect the device open-circuit voltage. Researchers in the United Kingdom sought to address this issue by adding a nickel oxide back buffer layer, which formed an ohmic back contact and increased open-circuit voltage levels.

Recovering silver from PV waste via green graphene

Researchers at James Cook University have developed a process to synthesize graphene from tangerine peel oil, which they then used to recover silver from waste PV material. To demonstrate the quality of the recovered silver and the synthesized graphene, they made a dopamine sensor that reportedly outperformed reference devices.

Floating photovoltaics for hydrogen generation, storage

New research from the UK shows that Oman could utilize a floating PV farm at the Wadi Dayqah Dam for hydrogen generation. The scientist said the project is technical viabile, although only with advancements in hydrogen energy storage technology could make it economically feasible.

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Grid shortages fuel China’s small-scale solar boom

Small-scale, “distributed” PV has become a significant part of the world’s biggest solar market but it is now butting up against the same grid constraints that have frustrated utility-scale PV in China and other parts of the world.

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