Implementation of INDO/SCI with COSMO implicit solvation and benchmarking for solvatochromic shifts

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Abstract

Accurate and rapid quantum mechanical prediction of solvatochromic shifts, particularly in systems where charge transfer plays a significant role, is important for many aspects of molecular and material design. Although the semiempirical INDO/SCI approach is computationally efficient and performs well for charge-transfer States, the availability of implicit solvent approaches has been limited. Here, we implement the COSMO solvent model with a perturbative state-specific correction to the excited-state energies with the INDO/SCI method. We show that for a series of prototypical π-conjugated molecules, our newly implemented INDO/SCI/COSMO model yields more accurate absorption energies and comparably accurate solvatochromic shifts to those computed using TD-ωB97XD and CIS with COSMO solvation at a substantially lower computational cost.

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Gieseking, R. L., Ratner, M. A., & Schatz, G. C. (2016). Implementation of INDO/SCI with COSMO implicit solvation and benchmarking for solvatochromic shifts. Journal of Physical Chemistry A, 120(49), 9878–9885. https://doi.org/10.1021/acs.jpca.6b10487

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