Title: Silver bismuth iodides in various compositions as potential Pb-free light absorbers for hybrid solar cells
Authors: Jung, Ki Woo
Sohn, Mi Rae
Lee, Hye Min
Yang, In Seok
Sung, Sang Do
Kim, Jeongho
Diau, Eric Wei-Guang
Lee, Wan In
應用化學系
Department of Applied Chemistry
Issue Date: 1-Jan-2018
Abstract: Polycrystalline silver bismuth iodide (SBI) powders of various compositions (Ag : Bi = 2 : 1-1 : 1 in atomic ratio) were synthesized via a solid-state reaction in an evacuated Pyrex tube. Regardless of the composition of Ag and Bi, Ag2BiI5 in the hexagonal phase was preferentially formed and BiI3 impurity in the rhombohedral phase was formed with the increase of the Bi component. The synthesized SBI powders of various compositions were applied as light absorbers for hybrid solar cells (HSCs), which employ mesoporous TiO2 as the electron transporting layer and pristine spiro-OMeTAD as the hole transporting layer. To deposit light absorber layers, the coating solutions were prepared by dissolving the synthesized SBI powders in DMSO/DMF/HI and spin-coated over the mesoporous TiO2 layer. For the solar cell employing pure Ag2BiI5, a photovoltaic conversion efficiency (PCE) of 1.74% was achieved, whereas the inclusion of the BiI3 impurities in the Ag2BiI5 phase significantly increased the device performance. The highest PCE of 2.31% was achieved with the SBI of Ag : Bi = 55 : 45. Furthermore, the SBI solar cells show no hysteresis in the J-V curve measurements and are highly stable under ambient conditions, exhibiting excellent long-term stability at a relative humidity of 50%.
URI: http://dx.doi.org/10.1039/c7se00477j
http://hdl.handle.net/11536/144460
ISSN: 2398-4902
DOI: 10.1039/c7se00477j
Journal: SUSTAINABLE ENERGY & FUELS
Volume: 2
Begin Page: 294
End Page: 302
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