首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Landscape of DNA-like inorganic metal free double helical semiconductors and potential applications in photocatalytic water splitting
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Landscape of DNA-like inorganic metal free double helical semiconductors and potential applications in photocatalytic water splitting

机译:DNA样无机金属双螺旋半导体和潜在应用在光催化水分裂中的景观

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摘要

Organic double helical structures such as deoxyribonucleic acid (DNA) and poly(tetrafluoroethylene) play important roles in organisms and industry. Enlightened by recent experimental progress, a novel family of DNA-like inorganic metal free structures XYP (X = Si, Ge, Sn; Y = Cl, Br, I) were investigated using first principle calculations. All these structures were identified that as being semiconductors and, in particular, their band gaps corresponded to wavelengths of 419-561 nm, which implies semiconducting absorption in the visible spectra. Partial charge densities indicate an ideal space separation of electrons and holes, which can highly reduce the recombination of carriers in redox reactions. By comparing the band edge positions with the redox potentials of water, it was also found that XYPs are excellent photocatalysts for water splitting. Furthermore, the electron mobility of one-dimensional XYP is estimated to be up to 2164 cm(2) V-1 s(-1), which is comparable with or even larger than that of other nanomaterials. These systematic studies on DNA-like inorganic semiconductors with applications in photocatalytic water splitting and high speed electronic devices will open a new page in the world of inorganic-DNA nanomaterials.
机译:有机双螺旋结构如脱氧核糖核酸(DNA)和聚(四氟乙烯)在生物和工业中起重要作用。通过最近的实验进展启动,使用第一原理计算研究了一种新型的DNA型无机金属无机结构XYP(X = Si,Ge,Sn; Y = Cl,Br,i)。鉴定所有这些结构,其作为半导体,特别是它们的带间隙对应于419-561nm的波长,这意味着可见光光谱中的半导体吸收。部分电荷密度表示电子和孔的理想空间分离,这可以高度降低氧化还原反应中载体的重组。通过将带边缘位置与水的氧化还原电位进行比较,还发现XPYS是用于水分裂的优异的光催化剂。此外,估计一维XPY的电子迁移率高达2164cm(2)V-1s(-1),其与其他纳米材料的甚至大于其他纳米材料相当。这些系统研究与光催化水分裂和高速电子设备中的应用中的DNA样无机半导体将在无机-DNA纳米材料世界中打开新的页面。

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