Excited-State Energy Flow in Phenylene-Linked Multiporphyrin Arrays
Song, H.-eun, Taniguchi, M., Speckbacher, M., Yu, L., Bocian, D. F., Lindsey, J. S., & Holten, D. (2009, May 15). The Journal of Physical Chemistry B, Vol. 113, pp. 8011–8019.
topics (OpenAlex): Porphyrin and Phthalocyanine Chemistry; Photochemistry and Electron Transfer Studies; Molecular Junctions and Nanostructures
TL;DR:
Simulations of the energy-transfer properties of fictive dodecameric arrays based on the data reported herein show that nonadjacent transfer steps make a significant contribution to the observed performance of such larger molecular architectures and indicate that energy transfer betweenNonadjacent sites has important implications for the design of multichromophore arrays for molecular-photonic and solar-energy applications.
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UN Sustainable Development Goal Categories
7. Affordable and Clean Energy
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