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DNA-CTMA/a-Si:H bio-hybrid photodiode: A light-sensitive photosensor

机译:DNA-CTMA / a-Si:H生物混合光电二极管:一种光敏光电传感器

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摘要

Recently, considerable interest have occurred in the development of an organic-inorganic-based bio-hybrid photodiodes (Bio-HPDs) with metal-free, eco-friendly, and cost-competitive features for light-sensitive devices. This paper reports a bio-inspired optical absorber material for the fabrication of Bio-HPDs using n-type hydrogenated amorphous silicon (a-Si:H) and a natural deoxyribonucleic acid (DNA)-cetyltrimethylammonium chloride (CTMA) biomaterial. a-Si:H is inexpensive and abundant, and DNA-CTMA is metal-free and eco-friendly. A DNA-CTMA coating on n-type a-Si:H leads to a chemically stable material with increased absorption and effective ties of dangling bonds and interface state density. Analysis results showed that the rectification ratio (RR) of the Bio-HPD is found to be 4 times higher than reference PD. This indicates that the effective RR is improved by the DNA-CTMA layer since it creates molecular charge interactions between DNA-CTMA layer and a-Si:H substrate. Moreover, Bio-HPD shows a light photosensitivity (I_(photo)/I_(dark)) of 474 with more reliable and has longer life time. In addition, the formation and feasible charge transport mechanisms are discussed. This biomaterial can be used for the development of commercially viable and environmentally safe large-scale Bio-HPDs applications.
机译:近来,对基于有机-无机的生物混合光电二极管(Bio-HPDs)的开发产生了极大的兴趣,这种光电二极管具有无金属,环保且具有成本竞争力的特性,适用于光敏器件。本文报道了一种使用n型氢化非晶硅(a-Si:H)和天然脱氧核糖核酸(DNA)-鲸蜡基三甲基氯化铵(CTMA)生物材料制造Bio-HPD的生物启发性光学吸收材料。 a-Si:H价格便宜且资源丰富,DNA-CTMA无金属且环保。在n型a-Si:H上的DNA-CTMA涂层可形成化学稳定的材料,该材料具有增强的吸收力以及悬空键和界面态密度的有效联系。分析结果表明,Bio-HPD的整流比(RR)比参考PD高4倍。这表明DNA-CTMA层提高了有效RR,因为它在DNA-CTMA层和a-Si:H底物之间产生了分子电荷相互作用。此外,Bio-HPD显示出474的光敏性(I_(照片)/ I_(黑暗)),可靠性更高,使用寿命更长。此外,讨论了电荷转移的形成和可行的机理。这种生物材料可用于开发商业上可行且对环境安全的大规模生物HPD应用。

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