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Layer-by-Layer Assembled Films of Perylene Diimide- and Squaraine-Containing Metal-Organic Framework-like Materials: Solar Energy Capture and Directional Energy Transfer

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Abstract

We demonstrate that thin films of metal organic framework (MOF)-like materials, containing two perylenedlimides (PDICl4, PDIOPh2) and a squaraine dye (S1); can be fabricated by, layer-by-layer assembly (LbL). Interestingly, these LbL films absorb across the visible light region (400-750 nm) and facilitate directional energy transfer. Due to the high spectral overlap and oriented transition dipole moments of the donor (PDICl4 and PDIOPh2) and acceptor (S1) components, directional long-range energy transfer from the bluest to reddest absorber was successfully demonstrated in the multicomponent MOF-like films. These findings have significant implications for the development of solar energy conversion devices based on MOFs.

Year of Publication
2016
Journal
ACS Applied Materials & Interfaces
Volume
8
Number
38
Issue
38
Number of Pages
24983-24988
Date Published
09/2016
Type of Article
letter
ISBN Number
1944-8244
DOI
PId
8e477bafd854dc2a418a8cb15ebf2d6c
Alternate Journal
ACS Appl. Mater. Interfaces
Journal Article
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Citation
Park, H. J., So, M. C., Gosztola, D., Wiederrecht, G. P., Emery, J. D., Martinson, A. B. F., … Hupp, J. T. (2016). Layer-by-Layer Assembled Films of Perylene Diimide- and Squaraine-Containing Metal-Organic Framework-like Materials: Solar Energy Capture and Directional Energy Transfer. ACS Applied Materials & Interfaces, 8(38), 24983-24988. https://doi.org/10.1021/acsami.6b03307 (Original work published 2016)