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Home - Technology - JinkoSolar claims an efficiency of 33.84% for perovskite-silicon tandem solar cells – SPE
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JinkoSolar claims an efficiency of 33.84% for perovskite-silicon tandem solar cells – SPE

solarenergyBy solarenergyJanuary 6, 2025No Comments2 Mins Read
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The result was confirmed by the Shanghai Institute of Microsystem and Information Technology under the Chinese Academy of Sciences (CAS).

January 6, 2025
Emiliano Bellini

Chinese solar module maker JinkoSolar said it has achieved an energy conversion efficiency of 33.84% for a perovskite-silicon tandem solar cell based on n-type wafers.

The company said the results were certified by the Shanghai Institute of Microsystem and Information Technology under the CAS. In previous attempts, JinkoSolar has a cell efficiency of 33.24% for the same device configuration.

“The record-breaking perovskite tandem solar cell uses that of JinkoSolar N-type high-efficiency monocrystalline TOPCon solar cell as the bottom cell, enhanced by significant improvements in several key technologies,” the manufacturer said. “Innovations such as full-surface passivated contact technology, perovskite interfacial defect passivation technology and bulk defect passivation technology have contributed to the improved efficiency of the perovskite/TOPCon tandem cell.”

Chinese manufacturer Longi holds the world record for the efficiency of perovskite tandem solar cells, achieving an efficiency of 34.6% in September 2024. Previously, Saudi Arabia’s King Abdullah University of Science and Technology (KAUST) announced a perovskite-silicon tandem device with an efficiency of 33.7%. .

Researchers from Germany’s Fraunhofer Institute for Solar Energy Systems (Fraunhofer ISE) recently said that the The practical energy conversion efficiency potential of perovskite-silicon tandem solar cells can reach 39.5%.

Researchers said exceeding this efficiency threshold will require a change in cell architecture, replacing buckminsterfullerene (C60) with a more transparent electron transport layer and finding more transparent alternatives to indium tin oxide (ITO) layers.

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