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Preparation and Hydrogen Storage Characteristics of Surfactant-Modified Graphene.

Tao Xu | Jiayu Chen | Wenhui Yuan | Baoqing Li | Li Li | Huijun Wu | Xiaoqing Zhou
Polymers | 2018

As the depletion of traditional fossil fuels and environmental pollution become serious problems for human society, researchers are actively looking for renewable energy sources. Since hydrogen energy is considered a clean, efficient, and renewable alternative energy source, it is regarded as the most promising option. In this context, how to store hydrogen safely and efficiently has become the major challenge that hinders the actual application. To fill this gap, this paper proposes to utilize surfactant-modified graphene for hydrogen storage. Through a modified Hummers' method and ultrasonic stripping, this study proposes to prepare graphene from graphite oxide with NaBH₄. The surfactant sodium dodecyl benzene sulfonate (SDBS) was used as a dispersant during the reduction process to produce dispersion-stabilized graphene suspensions. Then, to investigate the characteristics of the graphene suspensions, X-ray diffraction (XRD), SEM, TEM, Fourier transform infrared (FT-IR), Raman, XPS, TG, and N₂ adsorption⁻desorption tests were conducted. Finally, analytical models for hydrogen adsorption were investigated with Langmuir and Freundlich fittings. The results show that the application of SDBS can effectively reduce the agglomeration among graphene monolayers and increase the specific surface area of graphene, and that the adsorption behavior is consistent with the Freundlich adsorption model, and is a physical process.

Pubmed ID: 30961145

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Advanced Sequence Automated Pipeline (tool)

RRID:SCR_005578

Software developed to provide a framework for building and executing a pipeline to preprocess next generation sequence data and variant calls.

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