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Optically switchable transistors comprising a hybrid photochromic molecule-type organic active layer

机译:包含混合光致变色分子/ n型有机活性层的光开关晶体管

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Organic semiconductors can be easily combined with other molecular building blocks in order to fabricate multifunctional devices, in which each component conveys a specific (opto)electronic function. We have fabricated photoswitchable hybrid thin-film transistors based on an active bi-component material, consisting of an n-type fullerene derivative and a photochromic diarylethene that possesses light-tunable energy levels. The devices can be gated in two independent ways by either using an electrical stimulus via the application of a voltage to the gate electrode or an optical stimulus causing interconversion of the diarylethene molecules between their two isomers. Fine control over the device output current is achieved by engineering the diarylethenes' LUMO that can act as an intra-gap state controlled by a distinct wavelength in the UV or in the visible range. Importantly, the devices based on a mixed diarylethene/fullerene active layer preserve the high mobility of the pristine semiconductor.
机译:有机半导体可以很容易地与其他分子构件结合在一起,以制造多功能设备,其中每个组件都传达一种特定的(光电)电子功能。我们已经制造了一种基于活性双组分材料的光开关混合薄膜晶体管,该双组分材料由n型富勒烯衍生物和具有光可调能级的光致变色二芳基乙烯组成。可以通过向栅电极施加电压的电刺激或引起二芳基乙烯分子在其两个异构体之间相互转化的光学刺激,以两种独立的方式对器件进行门控。通过设计双芳烃的LUMO可以实现对器件输出电流的精细控制,该二芳硫醚的LUMO可以作为间隙内状态,受紫外或可见光范围内不同波长的控制。重要的是,基于混合的二芳基乙烯/富勒烯活性层的器件保留了原始半导体的高迁移率。

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