4.6 Article

Spacer layer design for efficient fully printable mesoscopic perovskite solar cells

Journal

RSC ADVANCES
Volume 9, Issue 51, Pages 29840-29846

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c9ra05357c

Keywords

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Funding

  1. National Natural Science Foundation of China [51502141, 91733301, 91433203, 61474049, 51773230, 21702069]
  2. Ministry of Science and Technology of China [863, 2015AA034601]
  3. Fundamental Research Funds for the Central Universities [2019kfyXJJS051]
  4. Program for HUST Academic Frontier Youth Team
  5. Science and Technology Department of Hubei Province [2017AAA190]
  6. 111 Project [B07038]
  7. Double first-class research funding of China-EU Institute for Clean and Renewable Energy [ICARE-RP-2018-SOLAR-001, ICARE-RP-2018-SOLAR-002]
  8. Shenzhen Peacock Plan [KQTD2016053015544057]
  9. Nanshan Pilot Plan [LHTD20170001]
  10. NFSC/Hong Kong RGC Research Scheme [N_HKUST610/14]
  11. Guangdong Science and Technology Program [2017B030314002]
  12. HK-RGC General Research Funds (GRF) [16312216]
  13. HK Innovation and Technology Fund [ITS/219/16, GHP/079/17SZ]
  14. China Postdoctoral Science Foundation [2017M612452, 2018M631240]

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The spacer layer is a key component of fully printable mesoscopic perovskite solar cells, but its precise characteristics are far from being understood in relation to the device design. In the present work, we perform a detailed systematic study on the effects of spacer parameters, such as size of building blocks, layer thickness, etc., on properties of the perovskite filler, insulating ability and performance of fully printable mesoscopic perovskite solar cells by combining the techniques of time-resolved photoluminescence, high-resolution TEM, insulating resistance measurements, impedance spectroscopy and J-V characteristics. Drawing on the deep understanding from these studies, we formulate key principles, which are anticipated to guide the design of the advanced spacer layer for fully printable mesoscopic perovskite solar cells.

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