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The Effect of Solvothermal Conditions on the Properties of Three-Dimensional N-Doped Graphene Aerogels

机译:溶剂热条件对三维N掺杂石墨烯气凝胶性能的影响

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摘要

Low-density three-dimensional (3D) N-doped graphene aerogels by a one-step solvothermal method in the presence of ethylenediamine (EDA) are reported. The gelation, formation, and properties of the aerogels were studied with solvothermal conditions, namely, operating temperature, time, graphene oxide (GO) concentration, and the GO/EDA w/w ratio. Two ranges of solvothermal conditions are employed: one involving an operating temperature below 100 °C and a conventional chemical reduction of GO with EDA at atmospheric pressure and a second one employing a higher temperature range up to 165 and a high pressure reduction with EDA. The results show that both solvothermal approaches allow for the fabrication of homogeneous N-doped 3D graphene aerogels with density values close to 10 mg cm−3. The measurements indicated that low values of GO concentration, temperature, and EDA are optimum for obtaining low-density 3D aerogels. N doping is improved with an EDA amount in lower temperature conditions. The N doping mechanism below 100 °C is dominated by the epoxy ring opening while at temperatures up to 165 °C both epoxy ring opening and amidation take place. The CO2 adsorption properties are strongly controlled by the nitrogen configuration, namely, pyridinic nitrogen in terms of its density.
机译:报道了在乙二胺(EDA)存在下通过一步溶剂热法进行的低密度三维(3D)N掺杂石墨烯气凝胶。在溶剂热条件下研究气凝胶的凝胶化,形成和性质,即工作温度,时间,氧化石墨烯(GO)浓度和GO / EDA w / w比。使用两种溶剂热条件:一种涉及低于100°C的工作温度,以及在大气压下使用EDA进行GO的常规化学还原,另一种涉及使用高达165°C的较高温度范围以及使用EDA进行高压还原。结果表明,两种溶剂热方法均允许制造密度接近10 mg cm -3 的均质N掺杂3D石墨烯气凝胶。测量表明,GO浓度,温度和EDA的低值对于获得低密度3D气凝胶是最佳的。在较低温度条件下,通过EDA量可以改善N掺杂。低于100°C的N掺杂机理主要由环氧环的开环决定,而在温度高达165°C时,环氧环的开环和酰胺化都会发生。 CO 2吸附性能受氮构型(即密度方面的吡啶氮)的强烈控制。

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