首页> 外文会议>35th IEEE Photovoltaic Specialists Conference >World's highest efficiency triple-junction solar cells fabricated by inverted layers transfer process
【24h】

World's highest efficiency triple-junction solar cells fabricated by inverted layers transfer process

机译:通过反向层转移工艺制造的世界上效率最高的三结太阳能电池

获取原文

摘要

A world record-setting efficiency of 35.8% at AM1.5G (x1) has been demonstrated by an InGaP (1.88 eV)/GaAs/InGaAs (0.97 eV) triple-junction solar cell fabricated using the inverted layer transfer process. Lattice-matched top and middle cells are grown first. Then, a lattice-mismatched bottom cell is grown to attain good crystal quality for the top and middle cells. A large stress caused by the increasing lattice constant is successfully released in a buffer layer between the middle and bottom cells, and a high Voc close to Eg/q-0.4 V has been achieved for the lattice-mismatched InGaAs bottom cell. The high Voc of over 3.0 V contributed to the record efficiency. After epitaxial growth, the cell layers on the GaAs substrate are transferred on a handling substrate. As the cell layer is transferred onto a film substrate, a lightweight flexible cell can be fabricated. New triple-junction cells will be applied to a flexible module, called a “space solar sheet,” after optimization of the cell structure for the AM0 spectrum and radiation tolerance. A heat-resistant concentrator cell can be obtained by transferring the cell layer onto a heat sink substrate. A terrestrial concentrator cell using the new structure is also attractive, because a high efficiency of close to 45% can be expected.
机译:使用反向层转移工艺制造的InGaP(1.88 eV)/ GaAs / InGaAs(0.97 eV)三结太阳能电池已证明在AM1.5G(x1)处的世界纪录效率为35.8%。晶格匹配的顶部和中间细胞首先生长。然后,生长晶格失配的底部晶胞以获得顶部和中间晶胞的良好晶体质量。由晶格常数增加引起的大应力已成功释放在中层和底部电池之间的缓冲层中,对于晶格不匹配的InGaAs底部电池,已实现接近Eg / q-0.4 V的高Voc。超过3.0 V的高Voc带来了创纪录的效率。外延生长之后,将GaAs衬底上的细胞层转移到处理衬底上。当将电池层转移到薄膜基材上时,可以制造轻质的柔性电池。在针对AM0光谱和辐射耐受性优化了电池结构之后,新的三结电池将应用于称为“太空太阳能板”的柔性模块。可以通过将电池层转移到散热基板上来获得耐热集中器电池。使用这种新结构的地面集中器单元也很吸引人,因为可以期望达到接近45%的高效率。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号