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光电转化效率
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晶澳太阳能申请钙钛矿光伏电池及其制备方法、叠层电池专利,提高了光电转化效率
Jin Rong Jie· 2025-08-11 01:13
Group 1 - The core viewpoint of the news is that JA Solar (Yangzhou) Technology Co., Ltd. has applied for a patent related to perovskite solar cells, aiming to improve the photoelectric conversion efficiency of these cells [1] - The patent application, titled "A Perovskite Photovoltaic Cell and Its Preparation Method, Stacked Battery," was filed on April 2025 and has been published with the number CN120456721A [1] - The perovskite solar cell includes a perovskite light-absorbing layer and a hole transport layer stacked on one side of the perovskite layer, which contains hole transport materials and phenyl sulfonates [1] Group 2 - JA Solar (Yangzhou) Technology Co., Ltd. was established in 2006 and is located in Yangzhou, primarily engaged in the manufacturing of computers, communications, and other electronic devices [2] - The company has a registered capital of 634,087.0275 thousand RMB and has invested in five enterprises while participating in 159 bidding projects [2] - The company holds 12 trademark registrations and 461 patent records, along with 127 administrative licenses [2]
全有机太阳能电池光电转化效率创新高
Ke Ji Ri Bao· 2025-05-05 05:21
Core Viewpoint - A new fully organic solar cell developed by Kanazawa University and Queen's University has achieved a record power conversion efficiency of 8.7%, more than doubling the previous record, paving the way for the practical application of environmentally friendly solar cells [1][2] Group 1: Technology and Innovation - Traditional silicon-based solar cells have high efficiency but pose environmental burdens due to harmful substances, while perovskite solar cells raise concerns due to lead compounds [1] - Fully organic solar cells, made entirely from carbon-based materials, can be safely disposed of after use, significantly reducing environmental costs [1] - Previous efficiency of fully organic solar cells was only 4%, far below silicon (27%) and perovskite (26%) solar cells, primarily due to two technical bottlenecks: the need for strong acids, bases, or high-temperature annealing in the preparation of conductive organic electrodes, and damage to lower layer structures during multi-layer stacking processes [1] Group 2: Breakthroughs and Future Prospects - The research team employed a "gentle process" to overcome these challenges, developing a transparent electrode based on the conductive polymer PEDOT:PSS, which can be prepared at 80°C without acids or bases [2] - They also introduced a carbon nanotube electrode lamination technique, forming electrodes on the solar cell barrier film and attaching them to the device, preventing damage to the underlying organic films during electrode manufacturing [2] - This combination of innovations has led to a significant increase in the efficiency of fully organic solar cells to 8.7%, marking a crucial step towards the practical application of high-performance fully organic solar cells [2] - Future applications for fully organic solar cells are expected in environmentally sensitive areas such as farmland and wearable devices, leveraging their lightweight and flexible characteristics [2]