Thermally activated delayed fluorescence (TADF) is dictated by the properties of the lowest singlet (S1) and triplet (T1) excited states. Both small energy difference (ΔEST) and large spin–orbit coupling (SOC) between S1 and T1 are desired to increase the rate for reverse intersystem crossing (RISC). In this work, we investigated the ground- and excited-state electronic properties of three representative D–(π)–A type TADF molecules in solid phase by means of a self-consistent quantum-mechanics/embedded-charge (QM/EC) approach, which consists of a series of iterative QM/EC single-point computations to account for the solid-state polarization effect. The results show that, unless the D and A units are perpendicular to each other, both the S1 ...
The donor–acceptor systems studied in this work have been demonstrated to show strong exciplex forma...
ABSTRACT: The thermally activated delayed fluorescence (TADF) donor−acceptor (D−A) molecule, DMAC−TR...
Despite significant efforts, a complete mechanistic understanding of thermally activated delayed flu...
The importance of intermediate triplet states and the nature of excited states has gained interest i...
The spin sublevel dynamics of the excited triplet state in thermally activated delayed fluorescence ...
We introduce a simple quantum-mechanical model for thermally activated delayed fluorescence (TADF). ...
We introduce a simple quantum-mechanical model for thermally activated delayed fluorescence (TADF). ...
Thermally activated delayed fluorescence (TADF) is a current promising route for generating highly e...
Spin statistics greatly limits the efficiency of OLEDs, which might be largely improved upon convers...
Spin statistics greatly limits the efficiency of OLEDs, which might be largely improved upon convers...
The design of organic compounds with nearly no gap between the first excited singlet (S1) and triple...
Knowing the underlying photophysics of thermally activated delayed fluorescence (TADF) allows proper...
Quantitative understanding of the photophysical processes is essential for developing novel thermall...
Knowing the underlying photophysics of thermally activated delayed fluorescence (TADF) allows proper...
A spin-flip from a triplet to a singlet excited state, that is, reverse intersystem crossing (RISC),...
The donor–acceptor systems studied in this work have been demonstrated to show strong exciplex forma...
ABSTRACT: The thermally activated delayed fluorescence (TADF) donor−acceptor (D−A) molecule, DMAC−TR...
Despite significant efforts, a complete mechanistic understanding of thermally activated delayed flu...
The importance of intermediate triplet states and the nature of excited states has gained interest i...
The spin sublevel dynamics of the excited triplet state in thermally activated delayed fluorescence ...
We introduce a simple quantum-mechanical model for thermally activated delayed fluorescence (TADF). ...
We introduce a simple quantum-mechanical model for thermally activated delayed fluorescence (TADF). ...
Thermally activated delayed fluorescence (TADF) is a current promising route for generating highly e...
Spin statistics greatly limits the efficiency of OLEDs, which might be largely improved upon convers...
Spin statistics greatly limits the efficiency of OLEDs, which might be largely improved upon convers...
The design of organic compounds with nearly no gap between the first excited singlet (S1) and triple...
Knowing the underlying photophysics of thermally activated delayed fluorescence (TADF) allows proper...
Quantitative understanding of the photophysical processes is essential for developing novel thermall...
Knowing the underlying photophysics of thermally activated delayed fluorescence (TADF) allows proper...
A spin-flip from a triplet to a singlet excited state, that is, reverse intersystem crossing (RISC),...
The donor–acceptor systems studied in this work have been demonstrated to show strong exciplex forma...
ABSTRACT: The thermally activated delayed fluorescence (TADF) donor−acceptor (D−A) molecule, DMAC−TR...
Despite significant efforts, a complete mechanistic understanding of thermally activated delayed flu...