Large and long-term photon energy storage in diazetidines via [2+2] photocycloaddition

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Abstract

We report a series of p-functionalized phenylbenzoxazoles that offer remarkable energy storage, exceeding 300 J g−1, for the first time among intermolecular cycloaddition-based molecular solar thermal energy storage systems. The [2 + 2] photocycloaddition of phenylbenzoxazoles generates diazetidine cycloadducts that store energy for up to 23 years in the solid state and release energy upon triggered cycloreversion. The solid-state phase transition contributes to increasing overall energy storage densities, and the dearomative cycloaddition process is revealed to be critical for maximizing the intrinsic energy storage capacities. The solvent-assisted cycloreversion is also used to accelerate the energy release from the emerging molecular scaffold.

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Nguyen, H. P. Q., Mukherjee, A., Usuba, J., Wan, J., & Han, G. G. D. (2024). Large and long-term photon energy storage in diazetidines via [2+2] photocycloaddition. Chemical Science, 15(45), 18846–18854. https://doi.org/10.1039/d4sc05374e

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