4.6 Article

Design of Coupled Porphyrin Chromophores with Unusually Large Hyperpolarizabilities

Journal

JOURNAL OF PHYSICAL CHEMISTRY C
Volume 116, Issue 17, Pages 9724-9733

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jp2115065

Keywords

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Funding

  1. DARPA through ARO [W911NF-04-1-0243]
  2. UNC EFRC: Center for Solar Fuels, an Energy Frontier Research Center
  3. U.S. Department of Energy, Office of Science, Office of Basic Energy Sciences [DE-SC0001011]
  4. DOE ASCR [DE-FC02-06ER25764]
  5. NSF [CHE-1012357, CHE-09-11119]
  6. NSEC [DMR-0425780]
  7. Direct For Mathematical & Physical Scien
  8. Division Of Chemistry [1012357] Funding Source: National Science Foundation

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A new series of push-pull porphyrin-based chromophores with unusually large static first hyperpolarizabilities are designed on the basis of coupled-perturbed Hartree-Fock and density functional calculations. The proper combination of critical building blocks, including a ruthenium(H) bisterpyridine complex, proquinoidal thiadiazoloquinoxaline, and (porphinato)zinc(11) units, gives rise to considerable predicted enhancements of the static nonlinear optical (NLO) response, computed to be as large as 11 300 x 10(-30) esu, 2 orders of magnitude larger than the benchmark [5-((4'-(dimethylamino)phenyl)ethynyl)-15-((4 ''-nitrophenyl)ethynyl)porphinato]zinc(II) chromophore. A two-state model was found to be useful for the qualitative description of the first hyperpolarizabilities in this class of NLO chromophores, which are predicted to have hyperpolarizabilities approaching the fundamental limit predicted to be attainable by empirical theoretical models.

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