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Nanocomposite approaches for enhancing the DC and photoconductivity of DNA films

机译:纳米复合材料增强DNA膜的DC和光电导性

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摘要

Enhanced DC conductivity and photoconductivity of cationic carbazole tethered deoxyribonucleic acid (Cz-DNA) in film devices is achieved by incorporating mobility enhancers. An anthracene-based organic semiconductor (namely 4HPA-Ant) and the inorganic semiconductor cadmium sulfide (CdS) multipod nanocrystal (NC) were used as the mobility enhancers. Space charge limited current (SCLC) experiments show that hole mobility in CdS:Cz-DNA composite film is improved significantly, by about an order of magnitude, compared to the Cz-DNA film. Similarly, the DC conductivity of the composite film is slightly enhanced by 4HPA-Ant. The photoconductivity is also improved in the Cz-DNA composite, with both 4HPA-Ant and CdS multipod NCs. The enhancement in photocurrent is by more than an order of magnitude, as demonstrated by current-voltage (I-V) characterization using DNA composite photodetectors.
机译:膜装置中阳离子咔唑系链的脱氧核糖核酸(Cz-DNA)的增强的DC电导率和光电导性是通过引入迁移率增强剂来实现的。蒽基有机半导体(即4HPA-Ant)和无机半导体硫化镉(CdS)多脚纳米晶体(NC)被用作迁移率增强剂。空间电荷限制电流(SCLC)实验表明,与Cz-DNA膜相比,CdS:Cz-DNA复合膜的空穴迁移率显着提高了大约一个数量级。同样,复合膜的直流电导率通过4HPA-Ant略有提高。使用4HPA-Ant和CdS多脚NC时,Cz-DNA复合材料的光电导性也得到改善。光电流的增强超过一个数量级,如使用DNA复合光电探测器的电流-电压(I-V)表征所证明的。

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