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Updated: Feb 14, 2026

Design, Fabrication, and Experimental Characterization of Plasmonic Photoconductive Terahertz Emitters
Published on: July 8, 2013
Helical π-Extension for Efficient Chiral TADF: A Theoretical Design of Multiresonance Emitters Modulated by
Jia Tang1, Yimin Xu1, Jikai Yu1
1Institute of Nanoscience and Engineering, Henan University, Kaifeng, Henan 475004, China.
Abstract:
Balancing short-range (SRCT) and long-range charge transfer (LRCT) is essential for designing efficient chiral multiresonance thermally activated delayed fluorescence (MR-TADF) emitters. Using the density functional theory (DFT) and time-dependent DFT, we design a series of heteroaromatic-functionalized helicene derivatives and demonstrated that helical π-extension, driven by heteroaromatic rings, effectively modulates frontier orbital distribution. This balances SRCT within the MR core and LRCT across the helical periphery, leading to narrow singlet-triplet gaps, enhanced spin-orbit coupling, and the emergence of dual reverse intersystem crossing (RISC) channels (T1 → S1 and T2 → S1) for efficient triplet harvesting. The chiral helical structure further preserves narrowband emission while boosting chiroptical responses. This work confirms heteroaromatic-engineered helical π-extension as an effective design strategy for high-performance chiral MR-TADF materials, providing theoretical guidance for regulating charge-transfer and excited-state dynamics in future molecular design.
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