Title |
Perovskite solar cells with monolayer modified PTAA and its application to all-perovskite tandem solar cells / |
Authors |
Tavgenienė, D ; Bi, H ; Fujiwara, Y ; Ding, C ; Sahamir, S.R ; Sanehira, Y ; Baranwal, A.K ; Takeshi, K ; Shi, G ; Kapil, G ; Zhang, Z ; Wang, L ; Bessho, T ; Segawa, H ; Achramovič, B ; Grigalevicius, S ; Shen, Q ; Hayase, S |
DOI |
10.15388/CCT.2023 |
ISBN |
9786090708330 |
Full Text |
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Is Part of |
Chemistry and chemical technology: international conference CCT-2023, March 10, 2023, Vilnius: conference book.. Vilnius : Vilnius university press, 2023. P 081, p. 118.. ISBN 9786090708330 |
Abstract [eng] |
Organic-inorganic perovskite solar cells (PSCs) have achieved a recorded power conversion efficiency (PCE) of 25.7%.[1] Thus, PSCs are considered to be the dominant player in the next-generation photovoltaic market.[2] So far, single-junction PSCs with narrow bandgap values have attracted attention.[3] As a member of perovskite materials, wide-bandgap perovskite (WBG-PVK) can`t be ignored because it is important for tandem solar cells due to its matchable bandgap.[4] However, low PCE and the current of WBG-PSCs limited the efficiency of the tandem solar cell. So, it is necessary to further improve the PCE of wide bandgap PSCs. Here, we demonstrate a series of SAMs with different alkyl chain lengths as interfacial modifiers to modify the PTAA and perovskite layer for improving the optoelectronic properties of PSCs by improving the quality of perovskite films and increasing the transport and extraction of interfacial carriers. The structures of the selfassembled monolayer materials (SAMs) is presented in Figure 1. [...]. |
Published |
Vilnius : Vilnius university press, 2023 |
Type |
Conference paper |
Language |
English |
Publication date |
2023 |
CC license |
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