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Updated: Jan 29, 2026

Preparation of Graphene-Supported Microwell Liquid Cells for In Situ Transmission Electron Microscopy
Published on: July 15, 2019
Correlated Electronic Properties of a Graphene Nanoflake: Coronene
Suryoday Prodhan1, Sumit Mazumdar2,3, S Ramasesha4
1Solid State and Structural Chemistry Unit, Indian Institute of Science, Bangalore 560012, India. suryodayp@gmail.com.
Abstract:
We report studies of the correlated excited states of coronene and substituted coronene within the Pariser⁻Parr⁻Pople (PPP) correlated π -electron model employing the symmetry-adapted density matrix renormalization group technique. These polynuclear aromatic hydrocarbons can be considered as graphene nanoflakes. We review their electronic structures utilizing a new symmetry adaptation scheme that exploits electron-hole symmetry, spin-inversion symmetry, and end-to-end interchange symmetry. The study of the electronic structures sheds light on the electron correlation effects in these finite-size graphene analogues, which diminishes going from one-dimensional to higher-dimensional systems, yet is significant within these finite graphene derivatives.
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