首页> 外文期刊>ACS applied materials & interfaces >Achieving Extremely Concentrated Aqueous Dispersions of Graphene Flakes and Catalytically Efficient Graphene-Metal Nanoparticle Hybrids with Flavin Mononucleotide as a HighPerformance Stabilizer
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Achieving Extremely Concentrated Aqueous Dispersions of Graphene Flakes and Catalytically Efficient Graphene-Metal Nanoparticle Hybrids with Flavin Mononucleotide as a HighPerformance Stabilizer

机译:以黄素单核苷酸为高性能稳定剂实现石墨烯薄片的高度浓缩水分散体和催化高效的石墨烯-金属纳米颗粒杂化体

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The stable dispersion of graphene flakes in an aqueous medium is highly desirable for the development of materials based on this two-dimensional carbon structure, but current production protocols that make use of a number of surfactants typically suffer from limitations regarding graphene concentration or the amount of surfactant required to colloidally stabilize the sheets. Here, we demonstrate that an innocuous and readily available derivative of vitamin B2, namely the sodium salt of flavin mononucleotide (FIVINTS), is a highly efficient dispersant in the preparation of aqueous dispersions of defect-free, few-layer graphene flakes. Most notably, graphene concentrations in water as high as 60 mg mL-1 using low amounts of FMNS (FMNS/graphene mass ratios of about 0.04) could be attained, which facilitated the formation of free-standing graphene films displaying high electrical conductivity (-52000 S m ') without the need of carrying out thermal annealing or other types of post-treatment. The excellent performance of FIVIITS as a graphene dispersant could be attributed to the combined effect of strong adsorption on the sheets through the isoalloxazine moiety of the molecule and efficient colloidal stabili7ation provided by its negatively charged phosphate group. The FMNS-stabilized graphene sheets could be decorated with nanoparticles of several noble metals (Ag, Pd, and Pt), and the resulting hybrids exhibited a high catalytic activity in the reduction of nitroarenes and electroreduction of oxygen. Overall, the present results should expedite the processing and implementation of graphene in, e.g., conductive inks, composites, and hybrid materials with practical utility in a wide range of applications.
机译:石墨烯薄片在水性介质中的稳定分散对于基于这种二维碳结构的材料的开发是非常需要的,但是目前使用多种表面活性剂的生产方案通常会受到石墨烯浓度或石墨烯含量的限制。胶体稳定片所需的表面活性剂。在这里,我们证明了维生素B2的无害且容易获得的衍生物,即黄素单核苷酸的钠盐(FIVINTS),在制备无缺陷,少层石墨烯薄片的水性分散体中是高效分散剂。最值得注意的是,使用少量的FMNS(FMNS /石墨烯质量比约为0.04)可达到水中的石墨烯浓度高达60 mg mL-1,这有助于形成显示出高电导率的自支撑石墨烯薄膜(- 52000 S m'),而无需进行热退火或其他类型的后处理。 FIVII TS作为石墨烯分散剂的优异性能归因于通过分子的异恶嗪部分在薄片上的强吸附和其带负电荷的磷酸基团提供的有效胶体稳定的综合作用。 FMNS稳定的石墨烯片可以用几种贵金属(Ag,Pd和Pt)的纳米颗粒修饰,并且所得杂化物在硝基芳烃的还原和氧的电还原中显示出高催化活性。总体而言,目前的结果应加速石墨烯在例如导电油墨,复合材料和混合材料中的加工和实施,并在广泛的应用中具有实用性。

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