Rational tuning of high-energy visible light absorption for panchromatic small molecules by a two-dimensional conjugation approach

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Abstract

We have demonstrated a rational two-dimensional (2D) conjugation approach towards achieving panchromatic absorption of small molecules. By extending the conjugation on two orthogonal axes of an electron acceptor, namely, bay-annulated indigo (BAI), the optical absorptions could be tuned independently in both high- and low-energy regions. The unconventional modulation of the high-energy absorption is rationalized by density functional theory (DFT) calculations. Such a 2D tuning strategy provides novel guidelines for the design of molecular materials with tailored optoelectronic properties.

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He, B., Zherebetskyy, D., Wang, H., Kolaczkowski, M. A., Klivansky, L. M., Tan, T., … Liu, Y. (2016). Rational tuning of high-energy visible light absorption for panchromatic small molecules by a two-dimensional conjugation approach. Chemical Science, 7(6), 3857–3861. https://doi.org/10.1039/c6sc00428h

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