The twisted donor-acceptor (D-A) organic formwork with a large dihedral angle (θ ) is usually adopted to narrow the singlet-triplet energy gap for obtaining excellent thermally activated delayed fluorescence (TADF) emitters. However, the dependence of overall TADF properties on θ has not been systematically investigated to this day. Taking new designed CzBP, CzBP-1M and CzBP-2M via introducing methyl as investigated models, it is found that (i) with increasing θ , the charge transfer component in S is larger than that in T in varying degrees, leading to non-monotonic spin-orbit couplings; (ii) the electron-vibration couplings between S and T states become the largest when θ approaching 80°, facilitating phonon-driven up-conversion; (iii) the overall TADF rate reaches a peak at θ ≈80°. By this, the TADF on/off switching is realized via methyl moiety for regulating θ from theoretical prediction to experimental confirmation. Importantly, the θ near 80° would be a good descriptor for screening excellent D-A type TADF emitters.

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http://dx.doi.org/10.1002/anie.202213463DOI Listing

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