Molecular-scale integrated multi-functions for organic light-emitting transistors

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Organic light-emitting transistors (OLETs) integrate the functions of light-emitting diodes and field-effect transistors into a unique device,opening a new door for optoelectronics.However,there is still a challenge due to the absence of high quality organic semiconductors for OLETs.Herein,we reported a novel molecule 2,6-di(anthracen-2-yl)naphthalene (2,6-DAN),which exhibited mobility of up to 19 cm2·V-1·s-1 and an absolute fluorescence quantum yield of 37.09%,which are good values for organic semiconductors.Moreover,OLETs based on 2,6-DAN single crystals showed bright yellowish-green emission and wall-balanced ambipolar charge transport.The excellent ratio of hole to electron mobility can reach up to 0.86,which is superior to most single-component OLETs in typical device configurations reported so far.
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