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Fabrication of Pd-DNA and Pd-CNT hybrid nanostructures for hydrogen sensors

机译:用于氢传感器的Pd-DNA和Pd-CNT杂化纳米结构的制备

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This review reports fabrication methods for ordered metallic nanostructures such as nanowires and nanoparticles based on deoxyribonucleic acid (DNA) templates. The phosphate groups in DNA are negatively charged; consequently, the DNA conformation may mineralize metals, e.g., palladium (Pd) at a relatively high metal concentration. We successfully form unique spherically shaped moss-like hybrid Pd nanoparticles using the small compacted globular state of DNA by controlling the reductive reaction. Pd can absorb hydrogen to become PdH_x, and hydrogen storage increases the electrical resistance and volume of Pd materials. Hence, the use of this material is attracting growing interest as a reliable, cheap, ultracompact, and safe hydrogen sensor. Pd-DNA hybrid nanoparticles can be used as highly sensitive hydrogen sensors, which exhibit a switch response that depends on the volume expansion in a cyclic atmosphere exchange. This paper also shows the fabrications of Pd-carbon nanotube (CNT) hybrid nanostructures.
机译:这篇评论报告了基于脱氧核糖核酸(DNA)模板的有序金属纳米结构(例如纳米线和纳米颗粒)的制造方法。 DNA中的磷酸基带负电;因此,DNA构象可以使金属例如较高浓度的金属矿化,例如钯(Pd)。我们通过控制还原反应,利用小而紧凑的DNA球形状态成功地形成了独特的球形苔藓样杂化钯纳米颗粒。 Pd可以吸收氢成为PdH_x,氢的存储会增加Pd材料的电阻和体积。因此,使用这种材料作为可靠,便宜,超紧凑和安全的氢传感器吸引了越来越多的兴趣。 Pd-DNA杂化纳米颗粒可用作高度敏感的氢传感器,其表现出的开关响应取决于循环气氛交换中的体积膨胀。本文还显示了钯-碳纳米管(CNT)杂化纳米结构的制造。

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