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Non-templated ambient nanoperforation of graphene: a novel scalable process and its exploitation for energy and environmental applications

机译:无模板周围nanoperforation石墨烯:一种新颖的可伸缩的过程及其剥削能源和环境应用程序

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摘要

Nano-perforation of 2D graphene sheets is a recent and strategically significant means to exploit such materials in modern applications such as energy production and storage. However, current options for the synthesis of holey graphene (hG) through nano-perforation of graphene involve industrially undesirable steps viz., usage of expensive/noble metal or silica nanoparticle templates and/or hazardous chemicals. This severely hampers its scope for large scale production and further exploitation. Herein, we report for the first time a scalable non-templated route to produce hG at ambient conditions. Nano-perforation is achieved with tunable pore size via the simple few layer co-assembly of silicate-surfactant admicelles along the surface of graphene oxide. A gentle alkali treatment and a reduction at optimized conditions readily yielded holey graphene with a remarkable capacitance (similar to 250 F g(-1)) and interesting adsorption abilities for pollutants. Density functional theory based computational studies reveal interesting insights on the template free nano-perforation at a molecular level. This simple rapid process not only excludes the need for expensive templates and harmful chemicals to yield hG at attractively ambient, chemically placid and industrially safer conditions, but also creates no hurdles in terms of scaling up.
机译:Nano-perforation二维石墨烯是最近利用和战略上重要的手段这种材料在现代应用程序等能源生产和存储。选择多洞的石墨烯的合成(hG)涉及通过nano-perforation石墨烯工业不受欢迎的措施即使用昂贵的/贵金属或二氧化硅纳米颗粒模板和/或危险化学品。严重阻碍了其大规模的范围生产和进一步开发。一个可伸缩的首次报告无模板路线产生汞在环境条件。通过简单的几层孔隙大小可调的co-assembly silicate-surfactant admicelles氧化石墨烯的表面。碱处理和减少优化容易产生多洞的石墨烯与条件非凡的电容(类似于250 F g (1))和有趣的吸附能力污染物。计算研究揭示出有趣的见解在自由nano-perforation模板分子水平上。只有排除了需要昂贵的模板和有害化学物质产生hG吸引力环境、化学平静的和工业安全条件,但也创造了没有障碍的扩大。

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