
Perovskite solar cells: Progress continues in efficiency,
This cell can be scaled for mass manufacturing. In March 2025 China-based UtmoLight announced it reached 18.1% efficiency with its 0.72-m²
A perovskite solar cell (PSC) is a type of solar cell that includes a perovskite-structured compound, most commonly a hybrid organic–inorganic lead or tin halide-based material as the light-harvesting active layer. Perovskite materials, such as methylammonium lead halides. Our laboratory infrastructure enables the scalable production of perovskite solar cells and their monolithic interconnection in modular architectures. Perovskite materials offer excellent light absorption, charge-carrier mobilities, and lifetimes.

This cell can be scaled for mass manufacturing. In March 2025 China-based UtmoLight announced it reached 18.1% efficiency with its 0.72-m²

An alternative ink design is introduced that enables fast coating of perovskite at room temperature for low-cost solar modules.

Shenzhen-based SolaEon has reported a 27.87% efficiency for a single-junction perovskite solar cell on a 0.076 cm² lab device, certified by

Perovskite-Info: the perovskite experts Perovskites materials are considered the future of solar cells, as their distinctive structure makes them perfect for enabling low-cost, efficient

The technology combines silicon, the material currently used in solar photovoltaics (PV) in panels across the world, with perovskite materials to

Perovskite solar cells/modules (PSCs/PSMs) have made significant advancements in both academic and industrial communities over the past decade due to

Metal halide perovskites with remarkable optoelectronic properties have become a competitive candidate for supporting the efficiency progression of photovoltaics.

Perovskite photovoltaics have advanced over the past 15 years, evolving from small-area laboratory devices to large-area modules. The field is shifting beyond proof-of-concept

Flexible perovskite solar cells (FPSCs) have emerged as a promising next- generation photovoltaic technology due to their lightweight,

In this review, we discuss several solution-based deposition techniques for large-area perovskite films and the effects of operating conditions on the films. Furthermore, different structural

GIST launched its “Strategic Research Group for the World''s First Commercialization of Perovskite Solar Cells,” marking the start of a coordinated effort to industrialize next-generation

Clearly, the self-assembly amorphous grain boundary strategy significantly enhances the yield of flexible perovskite photovoltaic modules, and their module efficiency demonstrates good

Solx, a solar module manufacturer based in Aguadilla, Puerto Rico, and Caelux, a manufacturer of perovskite-coated glass, have announced a five-year strategic partnership to

Perovskite materials can also be combined with other photovoltaic technologies in tandem architectures, with perovskite–silicon two-terminal devices recently

The key advancements in perovskite solar cells during the years 2024–2025 are summarized, along with an in-depth exploration of the underlying enhancement mechanisms. The performance gap between

Moreover, the solution-process nature makes the fabrication process of perovskite photovoltaic devices feasible and compatible with some mature

LONGi''s crystalline silicon-perovskite tandem solar cell achieved 33% efficiency on an ultra-large area of 260.9 cm² through material innovation and structural optimization. This marks a

Best Research-Cell Efficiency Chart NLR maintains a chart of the highest confirmed conversion efficiencies for research cells for a range of photovoltaic technologies, plotted from 1976 to the

This study tackles the challenge of upscaling perovskite solar modules (PSMs) to attain high power conversion efficiencies (PCEs) suitable for industrial applications.

To overcome these limitations and harness the full potential of photovoltaics, perovskite/silicon dual-junction tandem solar cells have emerged as a promising

Perovskite materials offer excellent light absorption, charge-carrier mobilities, and lifetimes, resulting in high device efficiencies with opportunities to realize a low-cost, industry

Perovskite solar cells face efficiency losses in ambient air because their precursors are highly moisture- and oxygen-sensitive. Liu et al. use an ionic-liquid additive to stabilize precursor

Organic self-assembled molecules (SAMs), which are widely used in perovskite solar cells (PSCs), should exhibit enhanced performance to support

Perovskite solar cells have emerged as one of the most exciting photovoltaic technologies, offering a unique combination of high efficiency and low-cost solution processability.

As part of this partnership, Toyo Seikan Group Holdings will handle module integration of MiraNeo® products that protect flexible photovoltaic panels, including front and back sheets and

Researchers from Nankai University and Beijing Institute of Technology in China claim to have achieved a world record power conversion efficiency for a perovskite solar cell with an inverted

Operationally stable perovskite solar cells (PSCs) have been sought after and debated since first being demonstrated. Here, we report a four-agent collaborative artificial intelligence (AI) to

In this review, we provide an overview of the current developments in PSMs, with efficiencies exceeding 20%, in both academic and industrial
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