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用于降低钙钛矿太阳能电池制造成本的纳米多孔金电极的回收利用

Recycled Utilization of a Nanoporous Au Electrode for Reduced Fabrication Cost of Perovskite Solar Cells.

作者信息

Yang Fengjiu, Liu Jinzhe, Lu Zheng, Dai Pengfei, Nakamura Tomoya, Wang Shenghao, Chen Luyang, Wakamiya Atsushi, Matsuda Kazunari

机构信息

Institute of Advanced Energy Kyoto University Uji Kyoto 611-0011 Japan.

School of Materials Science and Engineering East China University of Science and Technology Shanghai 200237 China.

出版信息

Adv Sci (Weinh). 2020 Jan 30;7(6):1902474. doi: 10.1002/advs.201902474. eCollection 2020 Mar.

Abstract

Perovskite solar cells (PSCs) using metal electrodes have been regarded as promising candidates for next-generation photovoltaic devices because of their high efficiency, low fabrication temperature, and low cost potential. However, the complicated and rigorous thermal deposition process of metal contact electrodes remains a challenging issue for reducing the energy pay-back period in commercial PSCs, as the ubiquitous one-time use of a contact electrode wastes limited resources and pollutes the environment. Here, a nanoporous Au film electrode fabricated by a simple dry transfer process is introduced to replace the thermally evaporated Au electrode in PSCs. A high power conversion efficiency (PCE) of 19.0% is demonstrated in PSCs with the nanoporous Au film electrode. Moreover, the electrode is recycled more than 12 times to realize a further reduced fabrication cost of PSCs and noble metal materials consumption and to prevent environmental pollution. When the nanoporous Au electrode is applied to flexible PSCs, a PCE of 17.3% and superior bending durability of ≈98.5% after 1000 cycles of harsh bending tests are achieved. The nanoscale pores and the capability of the porous structure to impede crack generation and propagation enable the nanoporous Au electrode to be recycled and result in excellent bending durability.

摘要

使用金属电极的钙钛矿太阳能电池(PSC)因其高效率、低制造温度和潜在的低成本,被视为下一代光伏器件的有前途的候选者。然而,金属接触电极复杂且严格的热沉积工艺仍然是一个具有挑战性的问题,因为在商业PSC中减少能源回收期时,普遍一次性使用的接触电极会浪费有限的资源并污染环境。在此,引入了一种通过简单的干转移工艺制备的纳米多孔金膜电极,以取代PSC中的热蒸发金电极。在具有纳米多孔金膜电极的PSC中,展示了19.0%的高功率转换效率(PCE)。此外,该电极可循环使用超过12次,以进一步降低PSC的制造成本和贵金属材料消耗,并防止环境污染。当将纳米多孔金电极应用于柔性PSC时,在1000次苛刻弯曲测试后,实现了17.3%的PCE和约98.5%的优异弯曲耐久性。纳米级孔隙以及多孔结构阻碍裂纹产生和扩展的能力,使纳米多孔金电极能够被循环使用,并具有出色的弯曲耐久性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/132e/7080531/ef952bea0e17/ADVS-7-1902474-g001.jpg

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