TY - JOUR
T1 - Screen-Printing Technology for Scale Manufacturing of Perovskite Solar Cells
AU - Chen, Changshun
AU - Ran, Chenxin
AU - Yao, Qing
AU - Wang, Jinpei
AU - Guo, Chunyu
AU - Gu, Lei
AU - Han, Huchen
AU - Wang, Xiaobo
AU - Chao, Lingfeng
AU - Xia, Yingdong
AU - Chen, Yonghua
N1 - Publisher Copyright:
© 2023 The Authors. Advanced Science published by Wiley-VCH GmbH.
PY - 2023/10/6
Y1 - 2023/10/6
N2 - As a key contender in the field of photovoltaics, third-generation thin-film perovskite solar cells (PSCs) have gained significant research and investment interest due to their superior power conversion efficiency (PCE) and great potential for large-scale production. For commercialization consideration, low-cost and scalable fabrication is of primary importance for PSCs, and the development of the applicable film-forming techniques that meet the above requirements plays a key role. Currently, large-area perovskite films are mainly produced by printing techniques, such as slot-die coating, inkjet printing, blade coating, and screen-printing. Among these techniques, screen printing offers a high degree of functional layer compatibility, pattern design flexibility, and large-scale ability, showing great promise. In this work, the advanced progress on applying screen-printing technology in fabricating PSCs from technique fundamentals to practical applications is presented. The fundamentals of screen-printing technique are introduced and the state-of-the-art studies on screen-printing different functional layers in PSCs and the control strategies to realize fully screen-printed PSCs are summarized. Moreover, the current challenges and opportunities faced by screen-printed perovskite devices are discussed. This work highlights the critical significance of high throughput screen-printing technology in accelerating the commercialization course of PSCs products.
AB - As a key contender in the field of photovoltaics, third-generation thin-film perovskite solar cells (PSCs) have gained significant research and investment interest due to their superior power conversion efficiency (PCE) and great potential for large-scale production. For commercialization consideration, low-cost and scalable fabrication is of primary importance for PSCs, and the development of the applicable film-forming techniques that meet the above requirements plays a key role. Currently, large-area perovskite films are mainly produced by printing techniques, such as slot-die coating, inkjet printing, blade coating, and screen-printing. Among these techniques, screen printing offers a high degree of functional layer compatibility, pattern design flexibility, and large-scale ability, showing great promise. In this work, the advanced progress on applying screen-printing technology in fabricating PSCs from technique fundamentals to practical applications is presented. The fundamentals of screen-printing technique are introduced and the state-of-the-art studies on screen-printing different functional layers in PSCs and the control strategies to realize fully screen-printed PSCs are summarized. Moreover, the current challenges and opportunities faced by screen-printed perovskite devices are discussed. This work highlights the critical significance of high throughput screen-printing technology in accelerating the commercialization course of PSCs products.
KW - large-scale fabrication
KW - low-cost technology
KW - perovskite solar cells
KW - screen-printing
UR - http://www.scopus.com/inward/record.url?scp=85166525068&partnerID=8YFLogxK
U2 - 10.1002/advs.202303992
DO - 10.1002/advs.202303992
M3 - 文献综述
C2 - 37541313
AN - SCOPUS:85166525068
SN - 2198-3844
VL - 10
JO - Advanced Science
JF - Advanced Science
IS - 28
M1 - 2303992
ER -