Triple Acceptors in a Polymeric Architecture for Balanced Ambipolar Transistors and High-Gain Inverters.

ADVANCED MATERIALS(2018)

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摘要
The exploration of novel molecular architectures is crucial for the design of high-performance ambipolar polymer semiconductors. Here, a triple-acceptors architecture strategy to design the ambipolar polymer DPP-2T-DPP-TBT is introduced. The utilization of this architecture enables DPP-2T-DPP-TBT to achieve deep-lying highest occupied molecular orbital (HOMO)/lowest unoccupied molecular orbital (LUMO) levels of -5.38/-4.19 eV, and strong intermolecular interactions, which are favorable for hole/electron injection and intermolecular hopping through -stacking. All these factors result in excellent ambipolar transport characteristics and promising applications in complementary-like circuits for DPP-2T-DPP-TBT under ambient conditions with high hole/electron mobilities and a gain value of up to 3.01/3.84 cm(2) V-1 s(-1) and 171, respectively, which are among the best performances in ambipolar polymer organic thin-film transistors and associated complementary-like circuits, especially in top-gate device configuration with low-cost glass as substrates. These results demonstrate that the triple-acceptors architecture strategy is an effective way for designing high-performance ambipolar polymer semiconductors.
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关键词
ambipolar polymer semiconductor,effective mass,molecular architecture,molecular packing,organic thin-film transistor
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