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Controlling the electronic properties of zigzag graphene nanoribbon using amino acids and oxygen molecule-A first principles DFT study

机译:使用氨基酸和氧分子控制之字形石墨烯纳米带的电子特性-DFT研究的第一原理

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The density functional study on the functionalization of zigzag graphene nanoribbon [ZGNR(6,0)] was carried out by using the amino acids L-Serine and L-Valine with/without O-2 molecule. Valine is an essential amino acid with hydrophobic character; Serine is a non-essential amino acid with polar nature. The functionalized systems were named as ZGNR-Ser, ZGNR-Val, ZGNR-SerO(2), ZGNR-ValO(2) respectively. The structural stability was analyzed by taking the difference in total energy between the pre and post optimized structures until the change comes to be of the order of 10(-2) to 10(-3) eV. The optimization was performed by using the local density approximation (LDA) with a k-points sampling of 1x1x150. The electronic properties were studied by using the partial charges, chemical potential, electrostatic field, electrostatic strain, static dielectric constant, the density of states, and band structure analysis. A direct relation between electrostatic energy and total energy was observed in all the systems. The band structure results envision that the ZGNR-SerO(2), ZGNR-ValO(2) systems show a semiconducting behavior, whereas the ZGNR-Ser, ZGNR-Val systems show a metallic behavior. The chemical potential analysis suggests a blue shift for the ZGNR-SerO(2), ZGNR-ValO(2) in comparison to the non-oxygen counterparts. The present study indicates the possibility of tuning the electronic properties through covalent functionalization using the amino acids and O-2 molecule and enunciates the option of using them in bioimaging, drug delivery, or theranostic applications.
机译:通过使用带有或不带有O-2分子的氨基酸L-丝氨酸和L-缬氨酸,对之字形石墨烯纳米带[ZGNR(6,0)]进行功能化的密度泛函研究。缬氨酸是具有疏水性的必需氨基酸。丝氨酸是具有极性的非必需氨基酸。功能化的系统分别命名为ZGNR-Ser,ZGNR-Val,ZGNR-SerO(2),ZGNR-ValO(2)。通过考虑优化前后的总能量之差来分析结构稳定性,直到变化达到10(-2)至10(-3)eV量级。通过使用局部密度近似(LDA)和1x1x150的k点采样来执行优化。通过使用部分电荷,化学势,静电场,静电应变,静态介电常数,态密度和能带结构分析来研究电子性质。在所有系统中都观察到静电能和总能之间的直接关系。能带结构结果表明ZGNR-SerO(2),ZGNR-ValO(2)系统显示出半导体行为,而ZGNR-Ser,ZGNR-Val系统显示出金属行为。化学势分析表明,与非氧对应物相比,ZGNR-SerO(2),ZGNR-ValO(2)发生了蓝移。本研究表明,通过使用氨基酸和O-2分子通过共价官能化来调节电子性能的可能性,并阐明了在生物成像,药物递送或治疗学应用中使用它们的选择。

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