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Structural-Property Relationship in Activated Carbon Synthesized from Rice Straw for Electronic Applicatio

机译:电子应用稻草稻草合成活性炭结构 - 性质关系

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Activated carbons have been prepared from rice straw by considering the material forms of rice straw, the chemical activation agent and the preparation method. The study seeks optimal conditions for giving better mico- and nano- properties, and to support the corresponding molecular structure. All the obtained results are referred to those of a commercial sample. Fourier transform infrared absorption, X-ray photoelectron spectroscopy, and dispersive X-ray spectroscopy are combined to determine functional groups. Moreover, a quantum chemical calculation has been done using density functional theory to argue the proposed molecular structure. Principally, the vibrational properties are compared to experimental results, and the corresponding electronic structure is calculated. Thermal stability and eventual reactions are evidenced by both differential and gravimetric thermal analysis. The surface topography of the resulting activated carbon is checked by scanning electron microscope and correlated with their chemical and textual characteristics carried out from Brunauer, Emmett and Teller analysis. Results illustrate that the resulting product is a mixture of carbon graphic structure and acidic/ basic entities and exhibit a global acidic pH. The use of KOH as oxidant agent and the ground raw material form leads to obtain good properties such as higher surface area and higher porosity. Based on the size compatibility making it possible to introduce low-radius single-walled carbon nanotubes, the electronic structures of the prepared activated carbon and that of chiral (5,5) SWCNTs and their corresponding frontier molecular orbitals have been carried out at the DFT/6-31-G(d) level. These calculations are carried out to evidence the charge transfer between both components in the bulk hetero-nano-junctions as interpenetrating network.
机译:通过考虑稻草,化学活化剂和制备方法的材料形式,已由稻草制备活性碳。该研究旨在提供更好的微米和纳米性能的最佳条件,并支持相应的分子结构。所有得到的结果都被称为商业样本的结果。傅里叶变换红外吸收,X射线光电子体光谱和分散X射线光谱组合以确定官能团。此外,已经使用密度泛函理论进行了量子化学计算,以争论提出的分子结构。主要是,将振动性能与实验结果进行比较,并且计算相应的电子结构。差分和重量热分析证明了热稳定性和最终反应。通过扫描电子显微镜检查所得活性炭的表面形貌,并与从Brunauer,Emmett和Teller分析进行的化学和文本特征相关。结果说明所得产物是碳图形结构和酸性/基本实体的混合物,并表现出全球酸性pH值。使用KOH作为氧化剂和研磨原料形式导致获得良好的性质,例如高表面积和更高的孔隙率。基于尺寸的兼容性,使得可以引入低半径的单壁碳纳米管,在DFT上进行了制备的活性炭的电子结构及其对手性(5,5)SWCNTs及其相应的前沿分子轨道/ 6-31-g(d)水平。对这些计算进行证据,证明本体杂种纳米结中的两种组分之间的电荷转移为互穿网络。

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